Software for exploring, developing, and evaluating quantum error-correction protocols.
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Updated
Oct 6, 2026 - Rust
Software for exploring, developing, and evaluating quantum error-correction protocols.
Equivalence Checking Algorithms for Quantum Error Correction Codes
Quantum Tanner codes and Ramanujan Graphs
Clifford circuits, graph states, and other quantum Stabilizer formalism tools.
Implementations and simulations of quantum error-correcting codes using Qiskit.
A Julia interface to popular python packages for decoding quantum error correcting codes.
Notebooks demonstrating fault-tolerant, Shor-style syndrome extraction on the Steane [[7,1,3]] code.
Quantum error-correction research code exploring automorphism-based fault-tolerant logical gate constructions and intermediate code symmetries.
MATLAB codes for the 2018 arXiv paper discussing synthesis of logical Clifford operators for stabilizer codes.
Quantum error correction code AI-discovery with Jax
An intuitive programming package for simulating and analyzing Clifford-dominated circuits, quantum measurement, and stabilizer states with applications to many-body localization, classical shadows, quantum chemistry and error correction code.
Repository for the paper "On The Design of Non-CSS Quantum Error Correction Codes with High Quantum Information".
As a part of Quantum error correction review project, we explored tensor network codes (TNC). TNC has diverse nad promising use in quantum error correcting codes. It is powerful tools to design larger stabilizer codes, estimating code distance and maximum likelihood decoding.
Implementation of stabilizer codes in pyQuil
This is a simulation of optimal decoder for Kitaev's Toric Codes, written in C++. The optimal toric decoder has a theoretical threshold of 11%. Through this simulation, I have successfully verified the threshold of 11%. This was done as a part of my MTech thesis at IIT Madras.
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