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SXS Collaboration

@sxs-collaboration.bsky.social
392 followers 65 following 66 posts

We develop and run supercomputer code for numerically simulating black holes, neutron stars, and beyond. SXS = Simulating eXtreme Spacetimes 🌐 www.black-holes.org

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Reposted by SXS Collaboration
keefemitman.bsky.social @keefemitman.bsky.social · 27/05/2026
Hello, world! As a first post, I thought I'd introduce myself; I'm a NASA Einstein Fellow @ Cornell studying gravitational waves as a part of @sxs-collaboration.bsky.social, @ligo.org, and @lisacommunity.bsky.social. I study many aspects of gravity, but my latest ambition has been testing GR!
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SXS Collaboration @sxs-collaboration.bsky.social · 20/05/2026
Check out the latest SXS preprint, led by member Yuan Feng of @caltech.edu! arxiv.org/abs/2605.03947 Effects of magnetically driven shocks on nucleosynthesis and kilonovae from neutron star mergers What's it about? 1/ ⚛️🧪🔭
Fig. 1 from the preprint. Caption: Schematic of the initial setup. A dipolar magnetic field is initialized only inside the truncation radius r0, while the ejecta cloud begins outside this radius. The cloud is decomposed into a dense inner core, r0 < r < rc, and a diffuse fast tail, rc < r < re, with homologous radial expansion.
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SXS Collaboration @sxs-collaboration.bsky.social · 05/05/2026
Can potential subsolar-mass gravitational wave events reveal their origin? New preprint by SXS researchers @caltech.edu and Cornell: Eccentricity as a signature of hierarchical subsolar-mass mergers in collapsar disks Jiaxi Wu, Elias Most, et al. arxiv.org/abs/2604.26912 What's it about? 1/2 ⚛️🧪🔭
arxiv.org
Eccentricity as a signature of hierarchical subsolar-mass mergers in collapsar disks
In this work, we investigate gravitational-wave signatures of a proposed subsolar-mass merger scenario resulting from fragmentation inside a collapsar accretion disk. This scenario has gained recent i...
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SXS Collaboration @sxs-collaboration.bsky.social · 05/05/2026
If you follow the @sxs-collaboration.bsky.social account, you've probably seen some of Keefe's research before!
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Reposted by SXS Collaboration
Leo C. Stein @duetosymmetry.com · 05/05/2026
Everyone say hi to @keefemitman.bsky.social! Keefe is an expert in black holes, gravitational waves, data analysis, and especially fun things like gravitational memory.
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SXS Collaboration @sxs-collaboration.bsky.social · 30/03/2026
📄New Preprint by Khairnar et al. arxiv.org/abs/2603.24661. ⚛️🧪 Here we improve the robustness of center-of-mass (CoM) frame fixing method for NR waveforms. We reduce the sensitivity of the fitting parameters by modeling the out-spiraling oscillations of the CoM charge using post-Newtonian results.
arxiv.org
Fixing the center-of-mass frame of numerical relativity waveforms using the post-Newtonian center-of-mass charge
The Bondi--van der Burg--Metzner--Sachs (BMS) frame of gravitational waves produced by numerical relativity (NR) simulations is crucial for building accurate waveform models. A proper comparison of NR...
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SXS Collaboration @sxs-collaboration.bsky.social · 17/02/2026
Congrats to SXS member Elias Most (Asst. Prof. at @caltech.edu) on being named one of the 126 Sloan Research Fellows for 2026! www.caltech.edu/about/news/t...
caltech.edu
Three Professors Named 2026 Sloan Fellows
Elias Most, Huy Tuan Pham, and Lingfu Zhang have been selected to receive the 2026 Sloan Research Fellowship.
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SXS Collaboration @sxs-collaboration.bsky.social · 10/12/2025
Two of our papers on black-hole scattering have been published in Physical Review D! 🎉 To celebrate, here is a visualisation of the gravitational wave emission from a close scattering encounter: youtu.be/u9wBZEYfyAM Paper 1: doi.org/10.1103/p6fx... Paper 2: doi.org/10.1103/bdsb...
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SXS Collaboration @sxs-collaboration.bsky.social · 16/11/2025
Our latest paper explores what happens when we push numerical relativity to the extreme when simulating black-hole scattering with the Spectral Einstein Code (SpEC). Check out this thread by the lead author to find out more!
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SXS Collaboration @sxs-collaboration.bsky.social · 06/10/2025
🎉 Happy paper publication day! 🎉 Our third catalog of binary black hole simulations, now published in Classical and Quantum Gravity. And it's open access! Scheel et al. 2025 Class. Quantum Grav. 42 195017 iopscience.iop.org/article/10.1... Also on the @arxiv.bsky.social at arxiv.org/abs/2505.13378
arxiv.org
The SXS Collaboration's third catalog of binary black hole simulations
We present a major update to the Simulating eXtreme Spacetimes (SXS) Collaboration's catalog of binary black hole simulations. Using highly efficient spectral methods implemented in the Spectral Einst...
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SXS Collaboration @sxs-collaboration.bsky.social · 02/09/2025
Just published in Physical Review Letters! Check out this article by SXS researchers Boyeneni, Wu and Most (@caltech.edu) on interpreting colliding black holes similar to the attraction of two electric charges. 🔒 journals.aps.org/prl/abstract... 🔓 arxiv.org/abs/2504.15978 🧪⚛️🔭
Rapidly spinning Kerr black hole in a dynamically evolved moving puncture gauge. Shown in color are the gravitational energy density and toroidal magnetic field in the meridional plane. Streamlines indicate the static component of the gravitational electric field and magnetic fields. The black ellipse marks the black hole horizon; white dashed contours denote the ergosphere.
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SXS Collaboration @sxs-collaboration.bsky.social · 29/08/2025
Cranking up the temperature! SXS researchers Hai-Yang Wang, Elias Most and Philip Hopkins (@caltech.edu) show how hot flows around supermassive black hole binaries with strong magnetic fields alter their feeding behavior. Full results at arxiv.org/abs/2508.16855
Volume rendering of a circumbinary magnetically arrested accretion disk simulation in a non-erupting state, when the cooling is treated with an adiabatic prescription.
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SXS Collaboration @sxs-collaboration.bsky.social · 29/08/2025
Earthquakes on neutron stars?! SXS researchers Louis Burnaz and Elias Most (@caltech.edu) and Ashley Bransgrove (Princeton) simulate how these could be detected in signals from very active radio burst transients. Read their results at arxiv.org/abs/2508.18033
Fluctuations in the toroidal component of the magnetic field (top) and electric field (bottom) in the simulated magnetar quake event.
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Reposted by SXS Collaboration
LIGO Scientific Collaboration @ligo.org · 26/08/2025
A spacetime waltz. Simulations from @sxs-collaboration.bsky.social consistent with our 86 most confident new detections, each showing the orbiting components and their emitted gravitational waves www.youtube.com/watch?v=3B6W... 🎬I Markin/T Dietrich/H Pfeiffer #GWTC4 🔭🧪⚛️☄️🐚
youtube.com
Visualization of the GWTC-4.0 events
YouTube video by Max Planck Institute for Gravitational Physics
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SXS Collaboration @sxs-collaboration.bsky.social · 20/08/2025
🎉 Great news 🎉 — yesterday CQG accepted our third catalog paper!! The accepted manuscript can be found on their site here: iopscience.iop.org/article/10.1... 🧪⚛️🔭
iopscience.iop.org
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Reposted by SXS Collaboration
Living Reviews | Relativity @livingrev-relativ.bsky.social · 08/08/2025
2025 ICTP Dirac Medal Goes to Gravity Explorers: The award is attributed to four scientists who have turned black holes into windows onto the deepest laws of nature www.ictp.it/news/2025/8/...
2025 ICTP Dirac Medal Goes to Gravity Explorers
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SXS Collaboration @sxs-collaboration.bsky.social · 16/07/2025
We now have our first paper on binary black hole scattering simulations generated with the Spectral Einstein Code (SpEC)! For more info on modelling these high-energy systems, see this thread by the lead author!
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SXS Collaboration @sxs-collaboration.bsky.social · 04/06/2025
Check out this article about star quakes and monster shocks — research done by SXS collaboration members Yoonsoo Kim and Elias Most, both at @caltech.edu
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Reposted by SXS Collaboration
Olly Long @hyperbolly.bsky.social · 21/05/2025
I’m incredibly proud to be part of this and to have my simulations turn into the first publicly available scattering and dynamical capture waveforms! Below is a plot I made for the Einstein Toolkit Blue Book (arXiv:2503.12263) showing the waveforms SXS:BBH:3999 (scatter) and SXS:BBH:4000 (capture).
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Reposted by SXS Collaboration
Leo C. Stein @duetosymmetry.com · 20/05/2025
Bonus: here's an animation I generated showing how the sausage was made. Each frame is one commit from the paper repo.
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SXS Collaboration @sxs-collaboration.bsky.social · 20/05/2025
We are excited to release a major update to our catalog of binary black hole simulations, available at arxiv.org/abs/2505.13378! Such simulations are key to LIGO/Virgo/KAGRA being able to extract science from their gravitational wave detections. 1/13 🧪⚛️🔭
Figure 1 from our new catalog paper. We accurately capture precession, memory, eccentricity, and high mass ratio systems. For full details, see the paper.
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SXS Collaboration @sxs-collaboration.bsky.social · 15/05/2025
When simulating orbiting black holes, we move our grid with the holes! One of the key lessons of general relativity is coordinates are meaningless. We exploit this to choose comoving coordinates where the metric changes as little as possible. www.youtube.com/watch?v=j4WG... 🧪⚛️🔭
youtube.com
A visualization of the moving mesh in binary black hole merger inspiral simulation
YouTube video by SXS Collaboration
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SXS Collaboration @sxs-collaboration.bsky.social · 12/05/2025
A recent paper led by collaboration members Yoonsoo Kim and Elias Most (both at Caltech) is in @aasnova.org today! This work explores the formation of strongly magnetized "monster" shocks and a transient "black hole pulsar" state from mergers of a magnetized neutron star and a black hole. ⚛️🧪🔭
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Reposted by SXS Collaboration
LIGO Scientific Collaboration @ligo.org · 09/05/2025
When two black holes merge, they form a bigger black hole. The mass of the bigger black hole will be around 95% of the mass of its two parent black holes. The remaining 5% is carried away as the energy in the gravitational waves #BlackHoleWeek 2/🧵 🎞️: @sxs-collaboration.bsky.social
media.tenor.com
a black hole in the middle of a galaxy
Alt: Simulation of two black holes merging. They appear black against the background of stars, but the light from the stars is distorted by their gravity
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SXS Collaboration @sxs-collaboration.bsky.social · 07/05/2025
Happy #BlackHoleWeek! To celebrate, we’re releasing the highest-resolution ray-traced still from one of our simulations to date. This skeet has a low res preview. To zoom into the full 43,200 × 21,600 pixel rendering, head to www.black-holes.org/2025/05/07/B... 🧪⚛️🔭
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SXS Collaboration @sxs-collaboration.bsky.social · 07/04/2025
A recent paper presents a PN-inspired framework to measure eccentricity directly from gravitational waves 🌊🌀 Focused on non-precessing eccentric BBH mergers, using mode modulations driven by the eccentricity. 📄 arxiv.org/abs/2502.02739
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SXS Collaboration @sxs-collaboration.bsky.social · 02/03/2025
Also, how do we feel about this account's handle? Should we switch to using our domain, becoming @black-holes.org?
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SXS Collaboration @sxs-collaboration.bsky.social · 02/03/2025
Our web site, www.black-holes.org, has silently re-launched! Now that we're using Jekyll and github pages, we hope to give more frequent updates about our latest research. What do you want to see there? Leave a comment below! 🧪⚛️🔭
black-holes.org
Home - SXS
The SXS project is a collaborative research effort involving multiple institutions. Our goal is the simulation of black holes and other extreme spacetimes to gain a better understanding of Relativity,...
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Reposted by SXS Collaboration
Leo C. Stein @duetosymmetry.com · 21/02/2025
Wake up babe, new preprint just dropped Length dependence of waveform mismatch: a caveat on waveform accuracy Mitman, Stein, et al. arxiv.org/abs/2502.14025 ⚛️🧪🔭
Screenshot of the title/auth list/abstract:

Length dependence of waveform mismatch:
a caveat on waveform accuracy

Keefe Mitman, Leo C. Stein, Michael Boyle, Nils Deppe, Lawrence E. Kidder, Harald P. Pfeiffer, Mark A. Scheel

Abstract. The Simulating eXtreme Spacetimes Collaboration’s code SpEC can now routinely simulate binary black hole mergers undergoing ∼ 25 orbits, with the longest simulations undergoing nearly ∼ 180 orbits. While this sounds impressive, the mismatch between the highest resolutions for this long simulation is O(10^−1). Meanwhile, the mismatch between resolutions for the more typical simulations tends to be O(10^−4), despite the resolutions being similar to the long simulations’. In this note, we explain why mismatch alone gives an incomplete picture of code—and waveform—quality, especially in the context of providing waveform templates for LISA and 3G detectors, which require templates with O(10^3) − O(10^5) orbits. We argue that to ready the GW community for the sensitivity of future detectors, numerical relativity groups must be aware of this caveat, and also run future simulations with at least three resolutions to properly assess waveform accuracy.Fig 2 from the preprint, which shows mismatch (between resolutions) as a function of length of time interval over which the mismatch is computed. There are 4 curves, each going roughly like M ~ t^2. The four curves are in two groups: Two from simulations SXS:BBH:1412, and two from SXS:BBH:1132. Each simulation has two different truncation error comparisons: med vs. low and high vs. med. They both show convergence.
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SXS Collaboration @sxs-collaboration.bsky.social · 11/12/2024
Check out this thread from SXS member @duetosymmetry.com about our latest preprint, on finally resolving a very subtle component of gravitational radiation, the tails:
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Reposted by SXS Collaboration
Olly Long @hyperbolly.bsky.social · 08/12/2024
(3/7) In 2022, I started my postdoc at the Max Planck Institute for Gravitational Physics (AEI) in Potsdam, Germany. Here, I extended my work to include black hole scattering with comparable masses using Numerical Relativity as part of the @sxs-collaboration.bsky.social.
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Reposted by SXS Collaboration
Olly Long @hyperbolly.bsky.social · 04/12/2024
Here is a visualisation of one of my Numerical Relativity simulations with @sxs-collaboration.bsky.social’s Spectral Einstein Code (SpEC). The initially unbound system loses enough energy at closest approach to become bound leading to a merger. It’s one of the coolest looking simulations I’ve done!
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SXS Collaboration @sxs-collaboration.bsky.social · 02/12/2024
Merging supermassive black hole binaries are prime targets for next-generation gravitational wave astronomy. New GPU-based 3D simulations by SXS researchers Elias Most & Hai-Yang Wang at @caltech.edu reveal strong magnetic fields arresting gas dynamics near the merger. arxiv.org/abs/2410.23264
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Reposted by SXS Collaboration
Leo C. Stein @duetosymmetry.com · 01/12/2024
PS The event horizons do totally unintuitive things when the BHs merge. Check out this simulation from the @sxs-collaboration.bsky.social: youtu.be/Y1M-AbWIlVQ?.... This comes from the mathematical definition of event horizons depending on the whole future history of the universe!
youtu.be
Event horizons of merging black holes with 6 to 1 mass ratio
YouTube video by SXS Collaboration
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SXS Collaboration @sxs-collaboration.bsky.social · 11/11/2024
Check out this profile of SXS member Elias Most:
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SXS Collaboration @sxs-collaboration.bsky.social · 11/11/2024
Say hello to the Black Hole Perturbation Toolkit! 🧪⚛️🔭
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SXS Collaboration @sxs-collaboration.bsky.social · 10/11/2024
Hello, new followers! This account will mostly post about new science from members of the SXS collaboration. Sometimes we make neat visualizations, too! Check out our YouTube channel: www.youtube.com/watch?v=f4Lw... 🧪⚛️🔭
youtube.com
Visualization of a black hole scattering and capture orbit
YouTube video by SXS Collaboration
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Reposted by SXS Collaboration
Niels Warburton @nielsw.bsky.social · 01/11/2024
We compare our PN and SF results to numerical relativity simulations from the @sxs-collaboration.bsky.social. We find the second-order SF results agree remarkably well with NR simulations for near-comparable mass binaries with mass ratios ~10:1.
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SXS Collaboration @sxs-collaboration.bsky.social · 28/10/2024
Featuring work by SXS member Elias Most (Caltech)! Check out the nice summary in AAS Nova:
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SXS Collaboration @sxs-collaboration.bsky.social · 22/10/2024
🎉 Publication day! 🎉 This review, by members of SXS, is now published in Classical and Quantum Gravity. And, it's Open Access! A review of gravitational memory and BMS frame fixing in numerical relativity 🔓 CQG: iopscience.iop.org/article/10.1... 🔓 arXiv: arxiv.org/abs/2405.08868 🧪⚛️🔭
‘Cylinder’ diagram of "scri plus" to provide intuition about proper supertranslations. The retarded time coordinate u runs vertically
in each plot, while the polar coordinate θ runs azimuthally. Black circles correspond to surfaces of constant u in the untransformed frame. A proper supertranslation shifts u by some function of θ, which can be written as some combination of ℓ ⩾ 2 spherical harmonics.
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SXS Collaboration @sxs-collaboration.bsky.social · 04/10/2024
We're so happy that Mark Scheel, one of the senior members of the SXS collaboration, has been elected a 2024 Fellow of the @apsphysics.bsky.social! Congratulations to Mark! 🧪⚛️🔭
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SXS Collaboration @sxs-collaboration.bsky.social · 02/10/2024
🎉 New preprint day! 🎉 This is a big one! First complete binary black hole inspiral, merger, & ringdown using our next-generation code SpECTRE. Simulating binary black hole mergers using discontinuous Galerkin methods arxiv.org/abs/2410.00265 Led by Kyle Nelli and Geoffrey Lovelace 1/8 🧪⚛️🔭 #🧮
Three panels. Top left: A visualization of the computational domain and two distorted apparent horizons. Top right: Top-down tracks of the centers of two apparent horizons, spiraling inward as two black holes lose energy by emitting gravitational waves. Bottom: The gravitational-wave strain (in two polarizations) as a function of time, showing the characteristic chirp signal.
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SXS Collaboration @sxs-collaboration.bsky.social · 27/09/2024
Peering into the "eccentric" side of black hole binaries through the brand new waveform model, ESIGMAHM! Check it out here: arxiv.org/abs/2409.13866 This new model is calibrated with our catalog of binary black hole numerical relativity simulations. #GravitationalWaves #BBH #eccentricity 🧪 ⚛️ 🔭
arxiv.org
ESIGMAHM: An Eccentric, Spinning inspiral-merger-ringdown waveform model with Higher Modes for the detection and characterization of binary black holes
We present a time-domain inspiral-merger-ringdowm (IMR) waveform model ESIGMAHM constructed within a framework we named ESIGMA for coalescing binaries of spinning black holes on moderately eccentric o...
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SXS Collaboration @sxs-collaboration.bsky.social · 17/09/2024
Move over, neutrons. Small muons, pions, & neutrinos make a sizeable difference when neutron stars collide! SXS members Michael Pajkos & Elias Most (@caltech.edu) dive in with this latest preprint: arxiv.org/abs/2409.09147 🧪🔭 ⚛️ 1/
Screenshot of the title and abstract from the arXiv preprint linked above
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SXS Collaboration @sxs-collaboration.bsky.social · 17/09/2024
Recent preprint from SXS members! Einstein-Klein-Gordon system via Cauchy-characteristic evolution: Computation of memory and ringdown tail arxiv.org/abs/2409.06141 Led by Sizheng Ma (Perimeter Inst.) What's it all about? 🧪⚛️🔭 #🧮 1/
A screenshot of the title/abstract of the preprint linked above
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SXS Collaboration @sxs-collaboration.bsky.social · 12/09/2024
*tap tap tap* Hello, world 4-volume! We're the Simulating eXtreme Spacetimes collaboration! You may know us from such hits as "What are the gravitational waves from a black-hole neutron-star merger?" or "What would you actually see looking at a black hole binary?" Image credit: SXS Lensing 🧪🔭⚛️ #🧮
A scientifically-accurate ray-tracing of what you would see when looking at a black hole binary in front of the Milky Way galaxy.
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SXS Collaboration @sxs-collaboration.bsky.social · 12/09/2024
@bot.astronomy.blue signup
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SXS Collaboration @sxs-collaboration.bsky.social · 11/09/2024
Hello, world 4-volume!
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