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Dom Williamson

@domwilliamson.bsky.social
537 followers 315 following 72 posts

Topological phases of matter and fault-tolerant quantum computing at The University of Sydney.

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Dom Williamson @domwilliamson.bsky.social · 16/09/2026
Quantum computers require magic to run useful algorithms. But classically benchmarking fault-tolerant magic operations is intractable. In new work, led by PhD student Yugo Takada, we introduce an efficient classical algorithm to exactly simulate a broad class of fault-tolerant magic operations.
arxiv.org
Exact efficient simulation of noisy logical magic states using Clifford stabilizers
The preparation of high-fidelity logical magic states is a crucial subroutine for universal fault-tolerant quantum computation (FTQC). Predicting the performance of FTQC and developing improved protoc...
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Dom Williamson @domwilliamson.bsky.social · 04/09/2026
Fractons are immobile quasiparticles in topological phases of matter. In new work, led by Juliette Soule, we generalize fractons to spacetime. This leads to new dynamical quantum phases of matter and floquet codes with no stringlike logical faults in space or time. arxiv.org/abs/2609.03703
Fractons hopping in space (left) and spacetime (right)
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Dom Williamson @domwilliamson.bsky.social · 02/09/2026
Fantastic to see this published in Quantum! This remains one of my favorite papers that I have written. It summarizes years of work on symmetry, defects, and topological order in tensor networks.
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mgualt.bsky.social @mgualt.bsky.social · 25/08/2026
A letter to the math community, to appear in the Notices. In response to what I view as irresponsible messaging and unfortunate decisions from some mathematical leaders influencing many in my department. www.math.toronto.edu/mgualt/math-...
math.toronto.edu
Mathematics and the LLM: 2026 – Coordinate Change
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Dom Williamson @domwilliamson.bsky.social · 24/08/2026
Quantum codes in 2D are pretty simple, they are all equivalent to copies of toric code. In higher dimensions things get a bit wild with multiple types of toric code and infinite families of inequivalent fracton codes. There, the classification question looks a bit like a lost cause.
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Benjamin Pope @benjaminpope.bsky.social · 29/07/2026
Two permanent teaching jobs in maths/stats and physics/astronomy in my old department at UQ! uq.wd3.myworkdayjobs.com/en-GB/uqcare...
uq.wd3.myworkdayjobs.com
Lecturer in Mathematics/Quantitative Science
School of Mathematics and Physics 2 x Full Time, permanent positions Diverse, supportive, and family-friendly work environment Base salary will be in the range of $119,462.94 – $141,545.09 + 17% super...
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Clément Canonne @ccanonne.github.io · 29/07/2026
Spent the day at an event mapping out Quantum Physics, Engineering, and Computing research at #USyd. Seeing so many people engaged and eager to collaborate, I feel energized and optimistic: there is a lot of good stuff to be done, and a lot of will to do so!
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Ben Brown @benbrown.bsky.social · 27/07/2026
I am very happy to see our work on non-Clifford gates with 2D non-Abelian topological phases published in PRX journals.aps.org/prx/abstract.... This is definitely among the most exciting projects I have worked on.
journals.aps.org
Universal Fault-Tolerant Quantum Computation in 2D without Getting Tied in Knots
Researchers have designed a way to perform complex logic gates in two-dimensional quantum computers by temporarily moving data into an exotic non-Abelian phase. This method provides a path toward larg...
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Dom Williamson @domwilliamson.bsky.social · 28/05/2026
Towards the end of my PhD, quite a while ago, I was working on extracting the symmetry-enriched topological order that occurs when the gauge charges of a finite group are condensed in a topological phase of matter.
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Dom Williamson @domwilliamson.bsky.social · 20/05/2026
Excited to share our new work led by fantastic undergraduate research student Cassie Hopkin. We show that many translation invariant qLDPC codes can be viewed as compactifications of a single parent fracton code that is local in a higher dimension. arxiv.org/abs/2605.19298 @vva.bsky.social
arxiv.org
Translation-invariant quantum low-density parity-check codes from compactified fracton models
Quantum error-correcting codes with translation symmetry and local checks have been studied extensively, leading to a wide variety of fracton codes in three or more dimensions which lack a complete un...
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Dom Williamson @domwilliamson.bsky.social · 19/05/2026
Very excited to explore new roads to fault-tolerant photonic quantum computation with PsiQuantum! rms.arc.gov.au/RMS/Report/D... @arc-gov-au.bsky.social @sydney.edu.au @psiquantum.bsky.social @bartlettquantum.bsky.social @acdoherty.bsky.social @jcbridgeman1.bsky.social @quantum-roberts.bsky.social
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Aravind (Sri AravindaKrishnan Thyagarajan) @aravind16coiner.bsky.social · 27/04/2026
📢 📢 📢 🚨 I am looking for two PhD students to hire in post quantum cryptography. Exciting opportunity to work at University of Sydney @sydneycompsci.bsky.social and the theory/crypto groups here. Do share with your students and contacts. #hiring #phd #pqc #cryptography 🔗 iacr.org/jobs/item/4199
iacr.org
Two PhD Positions in Post-Quantum Cryptography (PQC)
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Quantum Journal @quantum-journal.bsky.social · 25/04/2026
Freshly published in Quantum: Wire Codes by Nouédyn Baspin and Dominic Williamson doi.org/10.22331/q-2...
quantum-journal.org
Wire Codes
Nouédyn Baspin and Dominic Williamson, Quantum 10, 2083 (2026). Quantum information is fragile and must be protected by a quantum error-correcting code for large-scale practical applications. Recently,...
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Clément Canonne @ccanonne.github.io · 21/04/2026
The ARC Centre of Excellence in #Mathematics for #Quantum Era Security and Trust (MathQuEST) is hiring a Chief Operating Officer! 3+ years, based in #Sydney. Or, more succinctly: "we're planning a COO!" Details: usyd.wd105.myworkdayjobs.com/en-GB/USYD_E... More about #MathQuEST: mathquest.edu.au
usyd.wd105.myworkdayjobs.com
Chief Operating Officer - MathQuEST
Full time (applicants seeking part-time employment considered), fixed term, initially for 3 years, with possibility of further extension. Located at Camperdown Campus Senior leadership role supporting...
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Clément Canonne @ccanonne.github.io · 15/03/2026
It's official! The Theory of #Quantum Computation, Communication and Cryptography conference (TQC) 2028 will be held in Sydney, 🇦🇺 Australia, in August'28! tqc-conference.org/2026/2027/ #TQC2028 (TQC 2027 will take place in Grenoble, France)
media.tenor.com
a white cockatoo with a yellow beak is standing on a brown surface
Alt: a sulphur-crested cockatoo, looking very happy, showing its head
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Dom Williamson @domwilliamson.bsky.social · 06/03/2026
Rounding out the hat-trick, a new quantum weight reduction procedure that replaces the qubits and checks of an arbitrary quantum code with patches of surface code which are glued following the connectivity of the original code. arxiv.org/abs/2603.04883 Thanks to my collaborators Andrew & Nouédyn.
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Dom Williamson @domwilliamson.bsky.social · 06/03/2026
New work out today on quantum magic state cultivation with flagged low-depth adaptive circuits that gauge logical Clifford operators. arxiv.org/abs/2603.05429 Thanks Bence and Ben for the fun collaboration.
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Dom Williamson @domwilliamson.bsky.social · 06/03/2026
Here’s an artist’s (Andrew’s) depiction of the parsimonious cone (bottom) vs the old unparsimonious construction (top).
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Ben Brown @benbrown.bsky.social · 28/02/2026
Some time ago @domwilliamson.bsky.social and I wrote a paper on decoding fracton codes. This gave us the idea to try to extend MWPM decoding to all codes. We didn't get there yet but work led by @kaavyasahay.bsky.social has made great progress showing a matching decoder for bivariate bicycle codes.
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acowtan.bsky.social @acowtan.bsky.social · 19/02/2026
Gave a talk recently at Coogee on constructing and analysing spacetime volumes of LDPC codes & surgeries thereof. Thanks to @sunnyhe.bsky.social @domwilliamson.bsky.social and Ted Yoder for the wonderful collaboration. www.youtube.com/watch?v=Lxzw...
youtube.com
Coogee '26 Talks - Alex Cowtan (Xanadu)
YouTube video by Quantum @ Sydney
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Dom Williamson @domwilliamson.bsky.social · 02/02/2026
New work out today with a killer app for our recent fast and fault tolerant logical measurement procedure on quantum codes. Here we apply it to higher-form Clifford gates to prepare many logical magic states in parallel in constant time. arxiv.org/abs/2601.22939
arxiv.org
Fast magic state preparation by gauging higher-form transversal gates in parallel
Magic states are a foundational resource for universal quantum computation. To survive in a realistic noisy environment, magic states must be prepared fault-tolerantly and protected by a quantum error...
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Dom Williamson @domwilliamson.bsky.social · 14/11/2025
I had a great time hosting TOPO2025 this week in Sydney. thanks to all the speakers and our sponsors: sites.google.com/view/topowor...
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Tara Murphy @taramurphy.bsky.social · 10/11/2025
We are offering 4 PhD scholarships in #physics and #astronomy topics @sydney.edu.au Including: * FRBs with @manishacaleb.bsky.social * Quantum critical points with @domwilliamson.bsky.social * Nanostructured materials with @boriskuhlmey.bsky.social www.sydney.edu.au/scholarships... ⚛️ 🔭 ☄️ 🧪
sydney.edu.au
Physics Foundation Scholarship
A stipend scholarship to support PhD students who are undertaking research within School of Physics, Faculty of Science at the University of Sydney.
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Sydney Mathematical Research Institute (SMRI) @sydmathinst.bsky.social · 07/11/2025
Come and join us: we have 2x Postdoctoral Research Associate positions available at SMRI. Mathematicians of all areas are encouraged to apply (pure, applied, statistics). Please share with your network #MathSky Closing December 3 usyd.wd105.myworkdayjobs.com/en-GB/USYD_E...
usyd.wd105.myworkdayjobs.com
SMRI Postdoctoral Research Associate
Two (2) Full time, 3 years fixed term opportunities. Located at the Sydney Mathematical Research Institute (SMRI) Opportunity to contribute to research focused on pure or applied mathematics or statis...
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Dom Williamson @domwilliamson.bsky.social · 17/10/2025
Fault-tolerant logical measurement just got a lot faster! In new work, we show that code surgeries based on hypergraphs, rather than graphs, allow fast and parallel fault-tolerant logical measurements with low qubit overhead (without requiring the code to be single-shot). arxiv.org/abs/2510.14895
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Dom Williamson @domwilliamson.bsky.social · 14/10/2025
That was fun.
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Dom Williamson @domwilliamson.bsky.social · 14/10/2025
Very happy that I was scheduled to present first today. Talk about a hard act to follow…
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Dom Williamson @domwilliamson.bsky.social · 13/10/2025
How do you correct this error in a Layer Code? In new work arxiv.org/abs/2510.09218 we introduce a concatenated matching decoder and show that Layer Codes assisted by this decoder are partially self-correcting quantum memories at finite temperature!
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Dom Williamson @domwilliamson.bsky.social · 13/10/2025
Layer Codes are partially self-correcting: arxiv.org/abs/2510.09218
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Dom Williamson @domwilliamson.bsky.social · 08/10/2025
Floquet codes fit neatly onto the heavy-hex lattice. In new work out today, we show that making full use of all the heavy-hex qubits allows us to fit two floquet codes at once. We also describe transversal gates and low-depth adaptive circuits to switch to the color code. arxiv.org/abs/2510.05225
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Clément Canonne @ccanonne.github.io · 30/09/2025
📢 Come be my colleague: the School of Computer Science at 🇦🇺 #USyd is hiring! Multiple tenure-track-equivalent positions across the board (including theory!), but with a specific focus on Cybersecurity and Trustworthy Digital Systems, and ML/AI. ⏰ Dec 1 usyd.wd105.myworkdayjobs.com/en-GB/USYD_E...
usyd.wd105.myworkdayjobs.com
Multiple Continuing (Tenure-Track) Academic Positions, School of Computer Science, Faculty of Engineering, The University of Sydney
Join a thriving Faculty of Engineering at a University ranked amongst the world’s best teaching and research institutions Located in the heart of Sydney’s bustling inner west quarter, close to beaches...
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Frank Verstraete @fverstraete.bsky.social · 29/09/2025
Gauging versus dualities: equivalent up to constant depth quantum circuits. arxiv.org/abs/2509.22051
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Dom Williamson @domwilliamson.bsky.social · 25/09/2025
Join us on a journey through the gauging nexus between topological and fracton phases. In this work we show how to pass through a web of dualities between topological, symmetry-protected, and fractonic phases of quantum matter, and back again. arxiv.org/abs/2509.19440
There and back again… a gauging nexus between topological and fracton phases
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Dom Williamson @domwilliamson.bsky.social · 23/09/2025
Another fantastic paper by Noédyn Baspin on arxiv today. Introducing the free energy barrier for quantum codes and using it to destroy our dreams of a self-correcting quantum memory in 3D based on existing codes. scirate.com/arxiv/2509.1...
scirate.com
The Free Energy Barrier: An Eyring-Polanyi bound for stabilizer Hamiltonians, with applications to quantum error correction
The lack of an energy barrier in stabilizer Hamiltonians is well known to be an indication of short thermalisation times; and serves as a simple criteria to rule out self-correction. Its applicability...
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Dom Williamson @domwilliamson.bsky.social · 06/07/2025
Sad news. I had a great time working at IBM Almaden last year. The park that surrounds the campus is amazing.
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Dom Williamson @domwilliamson.bsky.social · 26/06/2025
I had a great time at @simonsinstitute.bsky.social for the Quantum Algorithms, Complexity, and Fault Tolerance Reunion workshop. The recordings are now up: simons.berkeley.edu/workshops/qu...
simons.berkeley.edu
Videos
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Dom Williamson @domwilliamson.bsky.social · 21/05/2025
New work out on p-string condensation via gauging higher-form symmetries. arxiv.org/abs/2505.13604 Often, gauging a higher-form symmetry leads to a gauge theory. Here we look at gauging a higher-form symmetry on a system of topological layers and we instead find unconventional fracton order!
arxiv.org
String-Membrane-Nets from Higher-Form Gauging: An Alternate Route to $p$-String Condensation
We present a new perspective on the $p$-string condensation procedure for constructing 3+1D fracton phases by implementing this process via the gauging of higher-form symmetries. Specifically, we show...
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Dom Williamson @domwilliamson.bsky.social · 19/05/2025
Talks from the recent YITP workshop “Logical Gates for Encoded Qubits” are up! Thanks again to the organizers for putting on a fantastic workshop. My talk about fault-tolerant logical measurement: www.youtube.com/watch?v=k0G0...
youtube.com
Dominic Williamson - Low-overhead fault-tolerant quantum computation by gauging logical operators
YouTube video by YITP Quantum Error Correction Workshop
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Dom Williamson @domwilliamson.bsky.social · 05/05/2025
Check out this short piece about our recent work on low-depth quantum circuit implementations of spin-chain dualities: phys.org/news/2025-04...
phys.org
Study shows that duality operators can be realized as unitary linear-depth quantum circuits
In the context of quantum physics, the term "duality" refers to transformations that link apparently distinct physical theories, often unveiling hidden symmetries. Some recent studies have been aimed ...
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Timo Hillmann @timohillmann.bsky.social · 07/04/2025
Section 3 of the Extractor paper is a very good overview I find as a non-expert. arxiv.org/abs/2503.10390
arxiv.org
Extractors: QLDPC Architectures for Efficient Pauli-Based Computation
In pursuit of large-scale fault-tolerant quantum computation, quantum low-density parity-check (LPDC) codes have been established as promising candidates for low-overhead memory when compared to conventional approaches based on surface codes. Performing fault-tolerant logical computation on QLDPC memory, however, has been a long standing challenge in theory and in practice. In this work, we propose a new primitive, which we call an $\textit{extractor system}$, that can augment any QLDPC memory into a computational block well-suited for Pauli-based computation. In particular, any logical Pauli operator supported on the memory can be fault-tolerantly measured in one logical cycle, consisting of $O(d)$ physical syndrome measurement cycles, without rearranging qubit connectivity. We further propose a fixed-connectivity, LDPC architecture built by connecting many extractor-augmented computational (EAC) blocks with bridge systems. When combined with any user-defined source of high fidelity $|T\rangle$ states, our architecture can implement universal quantum circuits via parallel logical measurements, such that all single-block Clifford gates are compiled away. The size of an extractor on an $n$ qubit code is $\tilde{O}(n)$, where the precise overhead has immense room for practical optimizations.
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Sydney Quantum Academy @sydneyquantum.bsky.social · 02/04/2025
Apply now for #quantum PhD #scholarships. Conduct research under experts at Macquarie Uni, UNSW Sydney, @sydney.edu.au + University of Technology Sydney. Benefit from competitive stipends, networking + exclusive events. Open to domestic & international students. More: bit.ly/3zspfC5 #PhD
bit.ly
PhD Scholarships » Sydney Quantum Academy
Our PhD Scholarship program offers students funding to work alongside some of the world’s leading quantum researchers and gain industry-ready skills.
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Dom Williamson @domwilliamson.bsky.social · 25/03/2025
Very cool new result by Nouédyn Baspin out today showing there are no quantum codes with growing distance and local checks in less than two dimensions. Giving a simple answer to a question I have been curious about for a while. scirate.com/arxiv/2503.1...
scirate.com
Stabilizer codes of less than two dimensions have constant distance
The surface code is a two-dimensional stabiliser code with parameters $[[n,1,\Theta(\sqrt{n})]]$. To this day, no stabiliser code with growing distance is know to live in less than two dimensions. In ...
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Ben Brown @benbrown.bsky.social · 21/03/2025
Logic gates can often be understood in terms of topological phases, so I often felt it was a shortcoming of my work on a 2D CCZ gate that I did not see the analogous physical picture. So I am pleased to share our work arxiv.org/abs/2503.15751 where we show the gate was a non-Abelian phase all along!
arxiv.org
Universal fault tolerant quantum computation in 2D without getting tied in knots
We show how to perform scalable fault-tolerant non-Clifford gates in two dimensions by introducing domain walls between the surface code and a non-Abelian topological code whose codespace is stabilized by Clifford operators. We formulate a path integral framework which provides both a macroscopic picture for different logical gates as well as a way to derive the associated microscopic circuits. We also show an equivalence between our approach and prior proposals where a 2D array of qubits reproduces the action of a transversal gate in a 3D stabilizer code over time, thus, establishing a new connection between 3D codes and 2D non-Abelian topological phases. We prove a threshold theorem for our protocols under local stochastic circuit noise using a just-in-time decoder to correct the non-Abelian code.
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Dom Williamson @domwilliamson.bsky.social · 21/03/2025
Are you a fan of fault-tolerant non-Clifford gates on the 2D surface code? Have you been wondering what was really going on in the protocols by Bombín and Brown? We have a new work for you: arxiv.org/abs/2503.15751
arxiv.org
Universal fault tolerant quantum computation in 2D without getting tied in knots
We show how to perform scalable fault-tolerant non-Clifford gates in two dimensions by introducing domain walls between the surface code and a non-Abelian topological code whose codespace is stabilize...
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Dom Williamson @domwilliamson.bsky.social · 20/03/2025
If your’e at March Meeting on Friday make sure you get to Oscar and Noah’s awesome session on Advances in Quantum Error Correction Theory. Ted Yoder will be presenting our work on gauging logical operators to perform efficient qLDPC code surgery summit.aps.org/events/MAR-W....
summit.aps.org
Advances in Quantum Error Correction Theory
8:00 am – 11:00 am, Friday March 21, Session MAR-W11, Anaheim Convention Center, 155 (Level 1)
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Dom Williamson @domwilliamson.bsky.social · 14/03/2025
QLDPC codes are a promising approach to efficient quantum memory. However, performing computation on such high-density memory is notoriously difficult. In a new work, we introduce extractors, which can be attached to any code block to augment it into a quantum processor. arxiv.org/abs/2503.10390
arxiv.org
Extractors: QLDPC Architectures for Efficient Pauli-Based Computation
In pursuit of large-scale fault-tolerant quantum computation, quantum low-density parity-check (LPDC) codes have been established as promising candidates for low-overhead memory when compared to conve...
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Dom Williamson @domwilliamson.bsky.social · 10/03/2025
Code surgery is a way to perform fault-tolerant quantum logic. Last year, there was a flurry of progress on improving general code surgery. In a new work we synthesize a number of approaches, and some new ideas, into an efficient scheme for parallelized code surgery. arxiv.org/abs/2503.05003
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Tara Murphy @taramurphy.bsky.social · 05/03/2025
We're advertising a continuing position in the School of Physics at Sydney! Lecturer / Senior Lecturer in Theoretical Optics & Photonics Deadline April 3rd usyd.wd3.myworkdayjobs.com/USYD_EXTERNA... Base Salary Level B/C, $122,830 - $173,492 p.a + 17% superannuation #Physics #AcademicSky
usyd.wd3.myworkdayjobs.com
Lecturer / Senior Lecturer in Theoretical Optics & Photonics
Full time, continuing position. Located on the Camperdown Campus at the School of Physics Exciting opportunity to join the leading physics department in the country, with outstanding staff and student...
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Victor V. Albert @vva.bsky.social · 21/01/2025
2025 REU-CAAR is out! @domwilliamson.bsky.social and I are looking for an REU summer student on bivariate bicycle codes. Yifan Hong and Yu-Xin Wang have a nice project on QLDPC codes. Shubham Jain is looking to find record breaking qutrit codes. www.cs.umd.edu/projects/reu...
cs.umd.edu
Combinatorics and Algorithms for Real Problems
Prerequisites Knowledge of Data Structures and Algorithms. Programming skills in C
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Dom Williamson @domwilliamson.bsky.social · 20/12/2024
What is the relationship between braiding in topological phases and nonlocal games? We explore this question for a number of examples and find a general principle based on order and disorder parameters for generalized symmetry-breaking phase transitions. arxiv.org/abs/2412.14288
arxiv.org
Braiding for the win: Harnessing braiding statistics in topological states to win quantum games
Nonlocal quantum games provide proof of principle that quantum resources can confer advantage at certain tasks. They also provide a compelling way to explore the computational utility of phases of mat...
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