Stimpunks × More Realms · Zine No. 111

It Happened Where You Are Sitting

on a beginning with no location, an observable universe that does have a centre, and the difference between no preferred place and no preferred frame


L★S
Love You Down To Your Star Stuff
open edition · print freely
Start with the wrong one

The picture you were given


Almost everyone carries the same image, and almost nobody was told it was an approximation. A point. Empty blackness around it. Then a flash, and debris flying outward into the waiting dark.

It is a good picture. It is vivid, it is easy to draw, and it is wrong in a specific and checkable way — not blurry, not simplified, but describing a different thing from the one the theory describes.

Three assumptions are smuggled in with it, and each one is doing damage:

That there was already space, sitting there empty, waiting. That there was a place where it happened, which you could in principle travel to. And therefore that there is a centre — and if there is a centre, everything else has a distance from it.

The picture is not a simplification of the theory. It is a different theory, and nobody is teaching it.

The last of those three is the one this zine is about, because a centre is never only a fact about geometry. A centre is a licence to sort things by how far they are from it.

The popular picture of the Big Bang, drawn as people actually imagine it A rectangular frame representing pre-existing empty space. Inside it, well away from the edges, a bright point with debris radiating outward in all directions. A dashed line runs from the point to the frame's edge, labelled as the distance from the centre. Everything in this drawing — the container, the location, the measurable distance from a middle — is an assumption the theory does not make. distance from the middle empty space, already there every element of this drawing is an assumption
Figure one · the picture almost everyone has
The measurement, and what it measured

What “expanding” actually means


In 1929 Edwin Hubble published six pages in the Proceedings of the National Academy of Sciences reporting that the more distant a galaxy is, the faster it is receding from us.

Read that through the picture on the last spread and it says something alarming: everything is running away from us specifically, so we must be at or near the place it started.

Read it through the geometry and it says the opposite. If every separation grows by the same factor, then from every vantage point the distant things recede fastest — not because you are central, but because there is more stretching distance between you and them. The observation that looks like evidence of a centre is the signature of there being none.

This is the bread-and-raisins analogy, and it is worth naming the flaw rather than repeating it and hoping. A loaf has a crust. It has an outside, an edge, and a raisin nearest that edge. The stretching is right; the container is not, and the container is precisely the thing in dispute.

Every raisin sees itself as still, and every other raisin leaving. All of them are right, and the loaf is the part of the analogy to throw away.

The same expansion seen from two different points, with no edge drawn Two rows of evenly spaced dots. The upper row is the earlier, more closely spaced arrangement; the lower row is the same dots later, spaced further apart. In the lower row one dot on the left is ringed in cyan with arrows showing every other dot moving away from it, and a different dot on the right is ringed in gold with arrows showing every other dot moving away from it too. Both observers see themselves as stationary and everything else receding. The dot pattern runs off both sides of the frame, because no edge exists to draw. earlier — every gap smaller later — every gap larger, by the same factor observer A observer B A sees everything receding, fastest at distance so does B. Neither is nearer anything. no edge is drawn because none exists to draw
Figure two · the same stretch, from two vantage points
The question with a fault in it

There is no outside


The most common follow-up question is what is it expanding into? — and the honest answer is not a fact but a correction: the question has a container built into its grammar, and the theory has no container to offer it.

“Into” presupposes a somewhere-else. Expansion here does not mean a thing getting bigger relative to its surroundings. It means the distances between things increasing, measured by rulers that are themselves inside the thing being described. There is no outside vantage from which the universe could be seen to occupy more room than it did.

This is not a dodge and it is not new. It falls directly out of the solutions Alexander Friedmann published in 1922 and Georges Lemaître published independently in 1927, which describe the whole of space evolving in time without ever positing an edge for it to press against, or an exterior for it to press into.

What this does not settle. Whether space is infinite or merely unbounded-and-finite is a separate question, still open, and spread eight is about how open it actually is. Neither answer supplies an outside, and neither supplies a centre.

Expanding into something, against expanding at all Two panels side by side. The left panel shows a small dotted blob inside a solid bordered box, with arrows pushing outward against the border and empty room between blob and border. The right panel shows the same dots at wider spacing with no border at all, the pattern continuing past every edge of the panel, and the arrows sitting between the dots rather than around the outside. The difference between the panels is the presence of the box. expanding INTO something needs a box, a gap, an outside expanding, full stop the gaps grow; there is no outside the only difference between the panels is the box
Figure three · the container is the whole disagreement
The answer the title is about

So where did it happen? Everywhere


Once there is no container and no edge, the question where stops having the shape it looked like it had. The hot dense phase was not an event that occurred at a location. It was a condition of all of space at once.

Every region that exists now existed then, packed unrecognisably closer together and far too hot for atoms to hold. That includes the region you are in. The volume your body currently occupies was part of it. Not descended from it, not made of material that travelled from it — it was it, at a different density and temperature.

So the Big Bang did not happen somewhere else and send you the leftovers. It happened here. It also happened in the Andromeda galaxy, and in the space between your hands, and at every other position you could name, because those positions are what was hot.

It is not that you are made of the debris of a distant event. You are standing in the place where it happened. So is everyone.

And here is the consequence the rest of this zine is about. If it happened at every location, no location is the origin. If no location is the origin, there is no distance-from-origin. The geometry declines to tell you who is near the middle, because it has not got one.

One volume of space, followed through three epochs Three horizontal bands stacked vertically, each one representing all of space at a different time. The top band is densely and evenly filled, marked hot and dense everywhere. The middle band is less dense and more spread out. The bottom band is sparse and clumped into structures. A single small square cell is outlined in cyan in the same relative position in all three bands, connected by vertical lines, showing that the region is continuously present and merely changes its density. No band has a centre or an edge; all three run off both sides of the frame. hot and dense, everywhere at once cooler, and further apart cold, sparse, and clumped into things the same region of space, all three times
Figure four · one place, three temperatures
The exception, and it is not a loophole

The centre that does exist, and it is you


There is one centre in all of this, and refusing to mention it would be the kind of tidy half-truth this collection exists to argue against.

Light travels at a finite speed and the universe has a finite age, so from where you are you can only see out to the distance light has had time to cross. That region is your observable universe, and it is a sphere, and you are exactly at the middle of it. Not approximately. Exactly.

Its radius is set by an age that has been measured: the Planck collaboration’s 2018 analysis gives 13.797 ± 0.023 billion years, combining the microwave background with baryon acoustic oscillations.

Now the part that matters. Everyone has one. A person in Andromeda has a sphere of their own, the same size, centred on them, overlapping yours and extending past it in the opposite direction. There is no arbitration between you. You are both exactly central, and neither of you is central to anything but your own sphere.

Every observer is at the centre of their own observable universe, and every one of them is right.

That sentence is harder than the flattering version. It does not say you are the centre. It says the centre is a fact about where you are standing, not about what is standing there — and that it is generated fresh for every observer, at no cost, without taking anything from anyone else.

Three observable universes, overlapping, each with its own exact centre Three circles of identical radius, drawn overlapping one another. Each has a filled dot at its exact centre, coloured cyan, gold and green respectively. Each dot is labelled as an observer. The circles cover different but overlapping regions, and none is contained in another. Below, a note reads that all three observers are exactly central and none is central to anything but their own circle. you someone in Andromeda someone we will never hear from same radius each · each dot exactly central
Figure five · three centres, none of them the centre
The refusal, placed early on purpose

No preferred place is not no preferred frame


There is a cheap reading of everything above, and it needs killing here rather than in the refusals at the back, because the rest of the zine leans on its absence.

The cheap reading is: no centre, therefore no reference, therefore nothing can be measured against anything, therefore it is all just perspective. That does not follow, and cosmology has the counterexample lying in plain sight.

The microwave background is not quite the same temperature in every direction. One half of the sky is very slightly warmer and the opposite half very slightly cooler — a dipole — and the reason is motion. We are moving, and the light ahead of us is shifted accordingly.

That gives a frame in which the dipole vanishes, and every observer anywhere can find their own motion relative to it. Planck measured the Solar System’s at 369.82 ± 0.11 kilometres per second. It is one of the best-determined numbers in the subject.

There is no privileged place, and there is still a shared reference every observer can measure against. Those are different claims, and only one of them is being made.

So: no centre does not mean no ground. It means the ground is something everyone can check independently and agree on, rather than something one position gets to declare on behalf of the rest.

The dipole in the microwave background, and the frame it defines An oval representing the whole sky. Its left half is tinted warm and its right half cool, meeting along a vertical line through the middle. An arrow points from the centre toward the warm side, labelled as the direction of motion. Text notes that the frame in which this warm and cool difference disappears is one every observer can find, and that the Solar System's speed relative to it is 369.82 plus or minus 0.11 kilometres per second. warmer cooler we are going this way 369.82 plus or minus 0.11 kilometres per second the frame where the warm and cool halves cancel no preferred place. a preferred frame.
Figure six · a reference nobody had to be given
Where the popular account stops

The qualifier that fell off


Every popular account reaches the same confident sentence: the universe is flat, and therefore probably infinite. Both halves need unpacking, and the first one does not mean what the word suggests.

Flat is not a claim about thinness. It is a claim about the geometry of space itself — whether Euclid’s rules hold over cosmological distances. In flat space parallel lines stay parallel, the angles of a triangle sum to 180 degrees, and the volume inside a sphere of radius r grows as r³. In positively curved space — the three-dimensional counterpart of a ball’s surface — parallels converge, triangles come out fat, and space closes on itself, so it is finite. Negatively curved space does the opposite and is open.

So is it flat? means which of those three do we live in? — and it is answered by checking triangles on the largest one available: the hot and cold patches in the microwave background, whose true size the theory predicts, measured against how big they look.

The sign convention catches people out. The measured quantity is written ΩK, and it runs opposite to the curvature itself. Zero is flat. Negative means positively curved, closed and finite. Positive means open. So a paper reporting “positive curvature” and a table reporting a negative ΩK are describing the same universe.

Now the measurement, which is really three measurements, because every dataset you add pulls it closer to flat:

Planck’s temperature and polarisation spectra alone give −0.044, with a 99 per cent range running from −0.095 to −0.007 — the paper notes that only about one sample in ten thousand lands at zero or above. Add the lensing map and it moves to −0.0106 ± 0.0065. Add the baryon acoustic oscillations and it lands on 0.0007 ± 0.0019 — flat, comfortably.

Planck’s own explanation is mechanical rather than rhetorical: the microwave background alone suffers a geometric degeneracy that lensing partly breaks, and closed models predict more lensing than we see.

But this is not a settled matter with one awkward number in it. Di Valentino, Melchiorri and Silk published the other reading in Nature Astronomy in 2019, arguing the Planck spectra prefer positive curvature at better than 99 per cent confidence and that assuming flatness “could therefore mask a cosmological crisis.”

The argument is live, in the literature, between named people. That is what an open question looks like from the inside.

Here is why any of this is in this zine. The no-centre claim survives every branch of that disagreement. An infinite flat space has no centre. A finite closed space has no centre either — the surface of a ball is finite, unbounded, and has no middle anywhere on it. Infinity was never what was doing the work.

Three curvature measurements, each with one more dataset added A horizontal axis with flat marked by a dashed vertical line near the right. Closed and finite lies to the left of it, open to the right. Three measurements are plotted as points with error bars, stacked vertically. The top one, Planck's spectra alone, sits well to the left of flat and its bar does not reach it. The middle one, with the lensing map added, sits much closer and still falls short of flat. The bottom one, with oscillation data added as well, straddles flat with a short bar. Each dataset added moves the answer toward flat. None of the three supplies a centre. flat Planck spectra alone plus the lensing map plus oscillation data ← closed, and finite open → each dataset added pulls it toward flat none of the three supplies a centre
Figure seven · the disagreement, drawn to scale
Turning the method on ourselves

A hedge on our own explanation


Six spreads ago we wrote that space itself expands, and we have leaned on it since. It is how the subject is taught, it is how every textbook phrases it, and it is not a finding.

It is a picture — a way of holding the mathematics that most people find tractable. And there are cosmologists who think it is a bad one, on the grounds that it invites exactly the reification this zine spent spread four dismantling: space as a material that stretches, doing things to the galaxies sitting in it.

Emory Bunn and David Hogg made the case directly in the American Journal of Physics in 2009, arguing that the cosmological redshift admits a perfectly good kinematic reading — light from a receding source, Doppler-shifted — and that the expanding-space story is a choice of description rather than a physical mechanism that has been detected.

What that does and does not touch. It is an argument about how best to describe the geometry, not about whether the geometry is right. The distances grow either way; the measurements are unaffected; and nothing in the dispute reinstates a centre. We keep the expanding-space language because it is the shared vocabulary, and we are flagging it because using a field’s standard picture without saying it is a picture is how the popular account on spread two got made.

We told you the wrong picture was being handed on unmarked. The least we owe you is the label on ours.

One more, smaller: the whole no centre result rests on the assumption that no place in the universe is special — the assumption Friedmann and Lemaître wrote into the solutions from the start. It is strongly supported by how uniform the sky looks at large scales. It is still an assumption, and it is doing real work here.

Three vantage points, one shape

Everything above was the same shape


This zine has now described the same structure three times without naming it. Naming it is the turn.

The raisin, on spread three. Every raisin sees itself as still and every other raisin leaving, and all of them are right. We kept the stretching and threw away the loaf, because the crust was the only part that could have told you which raisin was central.

The sphere, on spread six. Every observer sits exactly at the middle of their own observable universe. Not approximately. And it is generated fresh for each one, at no cost, taking nothing from anybody else.

And a third, which is neither ours nor physics. Helen Edgar’s constellation of intensities — carried on from Patrick Dwyer’s autism constellation, and older than either, as Not a Line records in detail. A constellation has no baseline and no rank; its stars sit at wildly different distances and cohere into a figure only from where you happen to stand.

Read those together and the shape is unmistakable. In all three, the coherence is made at the vantage point. It is not a property of the thing being looked at.

The figure is real. It is also made where you are standing — which is why nobody standing somewhere else owes you their coordinates.

So here is normative centering, stated exactly. It is the error of taking one vantage point’s figure and installing it inside the object as an origin — and then measuring everyone by their distance from it. High-functioning. Mild. Severe. The far end of the spectrum. Each of those is a distance, and none of them will say whose vantage point supplied the zero.

But the three are not equivalent, and flattening them would be the mistake this whole piece is built to avoid. The raisin and the sphere are physics. Nobody chose them, nobody installed them, and nobody can un-install them. The constellation is a figure that Autistic people chose, deliberately, against one that had already been installed in them.

Which is the whole and only use of the cosmology here. It is not the argument — it is the existence proof. A complete, predictive, relentlessly tested description of everything there is turns out not to need a centre, and loses nothing by not having one. That is sufficient to answer the one claim normative centering has always rested on: that a middle is compulsory.

Where this stops. Not a Line (No. 21) is the piece that makes the constellation argument properly, with the functioning-label critique and the lineage the metaphor belongs to. This spread does not re-run it. It only shows that the cosmology had been the same shape the whole way down.

An installed origin, against one field of points read from two vantage points The upper half shows a horizontal line labelled mild at one end and severe at the other, with nine points on it and a marked origin in the middle carrying a small flag noting that somebody stood here first. Dashed measurements run from that origin out to the points. The lower half shows the same nine points scattered freely with no line and no origin. Two viewers are marked, one cyan at the lower left and one gold at the right, the same two colours used for the two observers earlier in the zine. Faint lines from each viewer join the points into a different figure. Both figures are real and neither is the arrangement of the points. mild severe somebody stood here first every label is a distance from that point the same nine points, no origin installed read from here and from here both figures are real. neither is the points.
Figure eight · the line was installed · the figures are made where you stand
What this does not say

What this does not say


A piece that moves from cosmology to people has about four ways to go wrong, and three of them are flattering. So, plainly:

Not:that the universe having no centre means you are fine. The geometry grants no permissions and issues no reassurances. It cannot: is does not produce ought, and a zine that let it would be running the naturalistic fallacy in the direction it happens to like. Nothing about spacetime licenses anything about anybody. What the physics offers is narrower and more useful — it shows that a centre is the kind of thing that can be absent, and that the absence is not a defect.
Not:that everything is relative. Spread seven exists to refuse this. There is a frame every observer can find independently and agree on, and our speed against it is known to a fraction of a kilometre per second. No preferred place is not no shared reference, and a reading of this zine that ends in so nothing can be said has inverted it.
Not:“you are the centre of the universe” as encouragement. The claim is that everyone is at the centre of their own observable sphere, which is a flatter and harder sentence than the one it resembles. It confers no distinction, because it is not scarce. Anything that makes you feel singular has misread it.
Not:a claim that the spectrum is imaginary. People differ, the differences are real, and some of them cost people a great deal. The argument is about the coordinate system laid over those differences — a single line with a marked middle — and about who chose where the middle went. Rejecting the ruler is not denying the variation it was badly measuring.
Not:settled on the parts that are not settled. Whether space is finite or infinite is open, and spread eight gives both sides with their error bars. What started inflation, whether it ended everywhere at once, and whether there is anything it makes sense to call before — all open. This zine takes exactly one claim as settled, that the hot dense phase was a state of all of space rather than an event at a place, and builds only on that.
Not:a proof. A rhyme, not a proof. General relativity establishes nothing whatsoever about functioning labels. What cosmology supplies is one honest demonstration — that a description can decline to have a centre, and lose no explanatory power at all by declining — and that demonstration is worth having because the people who installed the middle of the spectrum have always implied that a middle was compulsory. It is not compulsory. That is the entire claim.
L★S

It happened everywhere, which is why it happened here. No location is the origin. Nobody is at the far end of anything.

No. 11 Why Difference Comes First — Helen Edgar, on the unevenness that made everything
No. 21 Not a Line — the constellation, and the lineage the figure belongs to
No. 38 Eight Tenths of a Second — observers differ, and astronomy kept the observer
No. 40 Five Sigma — a threshold is a number somebody chose
No. 56 The Noise Floor — how the microwave background was found, by two people trying to remove it
No. 111 It Happened Where You Are Sitting — a geometry with no middle ← you are here
Reflection

Which scale have you been placed on, and has anyone ever told you where its middle came from?

What would you describe differently if you could not say how far along someone was?

Where in your life is a shared reference being confused with a ranking?

Whose position got promoted to an origin in the room you spend most of your time in?

What does it change to know the beginning happened where you are standing, rather than somewhere you would have to travel to?

Sources

The age, and the curvature. Planck Collaboration, “Planck 2018 results. VI. Cosmological parameters,” Astronomy & Astrophysics 641, A6 (2020) — PDF read directly rather than quoted from the abstract, because the abstract carries neither number. The age of 13.797 ± 0.023 billion years is the combined temperature, polarisation, lensing and oscillation figure from the parameter table. The three curvature figures on spread eight are its equations 46b (−0.044, +0.018/−0.015, the temperature and polarisation spectra alone, with the 99 per cent range −0.095 to −0.007 and the one-in-ten-thousand remark in the same paragraph), 47a (−0.0106 ± 0.0065, adding the lensing reconstruction) and 47b (0.0007 ± 0.0019, adding the oscillations — the abstract rounds this to 0.001 ± 0.002 and the equation is quoted here instead). The paper argues against the closed reading in the same breath it reports it, on the grounds that the lensing reconstruction and the oscillation data do not support it — which is why spread eight gives both sides rather than picking the more interesting one.

The closed-universe argument. Eleonora Di Valentino, Alessandro Melchiorri & Joseph Silk, “Planck evidence for a closed Universe and a possible crisis for cosmology,” Nature Astronomy 4, 196–203 (2019), DOI 10.1038/s41550-019-0906-9 — for the preference at better than 99 per cent confidence and for “could therefore mask a cosmological crisis.” Open, and stated: we read the abstract at the publisher and the paper is paywalled, so the two phrases quoted are the authors’ own from the abstract and nothing beyond it is attributed to them.

The dipole. Planck Collaboration, “Planck 2018 results. I. Overview and the cosmological legacy of Planck” — PDF read directly, section 2.1, for 369.82 ± 0.11 kilometres per second. The paper gives it alongside the dimensionless figure it is derived from.

The measurement that started it. Edwin Hubble, “A relation between distance and radial velocity among extra-galactic nebulae,” Proceedings of the National Academy of Sciences 15, 168–173 (1929). The geometry. Alexander Friedmann, “Über die Krümmung des Raumes,” Zeitschrift für Physik 10, 377–386 (1922) — the journal prints the name as Friedman; and Georges Lemaître’s 1927 paper, republished with its translated title “A homogeneous universe of constant mass and increasing radius accounting for the radial velocity of extra-galactic nebulae” in General Relativity and Gravitation 45, 1635–1646 (2013). Open: both were confirmed at their bibliographic records rather than read in the original languages, and neither is quoted here.

The hedge on spread nine. Emory F. Bunn & David W. Hogg, “The kinematic origin of the cosmological redshift,” American Journal of Physics 77, 688–694 (2009). Inflation, mentioned only as an open question, is Alan Guth, “Inflationary universe: A possible solution to the horizon and flatness problems,” Physical Review D 23, 347–356 (1981).

One number deliberately not printed. The radius of the observable universe is widely quoted at about 46 billion light years, which is larger than the age in light years because the intervening space has expanded. It is correct and it is a distraction on spread six, where the argument needs only that the sphere is finite and centred on the observer. We looked it up, and then left it out.

Credits

Prompted by an episode, built from the papers. Ryan Boren brought over a compilation of Brian Cox interview clips posted as The Big Bang Is Stranger Than You Think, in which Cox says plainly that the Big Bang “happened everywhere” and that it is “not expanding into anything” — the two sentences this zine is built on. Nothing is cited to that video and nothing is quoted from it. The file is an automatic transcript of clips of several different vintages: it gives the age as 13.75 billion years in the older segments and 13.8 in the newer, renders branes as “brains” throughout, and turns “ten with 120 noughts after it” into “knots.” It is a lead, and a good one. Every figure above came from a paper instead.

Multiverses, fine-tuning and eternal inflation are absent on purpose. They are the most striking part of the source and Cox marks them, repeatedly and carefully, as speculative — “way out there, way out on the edge” are his words for one of them. A collection whose register test is one settled fact, followed honestly has no business building an argument about people on a contested cosmology, however good it would sound.

The constellation on spread ten is not ours, and the chain behind it is longer than two names. A constellation of intensities is Helen Edgar’s, from “The Constellation of Intensities: Neuroqueering the Spiky Profile” (Autistic Realms, 2026); she carries it on from Patrick Dwyer’s “The Autism Constellation” (Autistic Scholar, 2020). Dwyer’s own 2021 update says he did not coin it: Caroline Hearst had built and shown a physical constellation model, and in correspondence with Helen, Damian Milton credits Larry Arnold as the first he knows of to use constellation in place of spectrum, with Milton and the late Dinah Murray discussing similar ideas. The metaphor is older than any one essay and belongs to the Autistic community. That chain is reproduced from Not a Line rather than re-derived here, and it is reproduced in full for that zine’s own stated reason — a piece arguing against ranking people should not erase the people whose idea it is using.

What this deliberately does not re-argue

Why Difference Comes First (No. 11) is Helen Edgar’s, and it owns the microwave background’s unevenness — the one part in 100,000 that let gravity gather anything at all, and the argument that difference is what makes structure possible. That is the strongest neurodiversity reading of the early universe and it is hers; this zine stays entirely off it, and takes the geometry instead of the anisotropy. The Difference-First Frame holds the backing material for it. Not a Line (No. 21) owns the spectrum-as-line critique, the functioning labels and the constellation that replaces them — it is the nearest piece to spread ten by some way, and that spread deliberately stops at showing the cosmology has the same shape rather than making the argument again. The Noise Floor (No. 56) owns the discovery of the background, and The Universe Runs on Difference (No. 8) owns monoculture and variety.

A rhyme, not a proof. No result in cosmology establishes anything about a nervous system, a diagnosis or a scale of severity, and nothing here is offered as a cause. What the geometry supplies is one honest demonstration — that a complete, predictive, heavily tested description of something can simply decline to have a centre — and that is worth having, because every scale people have been sorted on was built by somebody who implied a middle was compulsory. The universe was under no such obligation. Neither are we.