57+ QEC implementations tracked
Interactive visualizations
Useful for researchers & students
Github: github.com/francois-marie/awesome-quantum-computing-experiments
Site: francoismarieleregent.xyz/awesome-quantum-computing-experiments/
1/3 🧵
57+ QEC implementations tracked
Interactive visualizations
Useful for researchers & students
Github: github.com/francois-marie/awesome-quantum-computing-experiments
Site: francoismarieleregent.xyz/awesome-quantum-computing-experiments/
1/3 🧵
"Circuit compression for 2D quantum dynamics"
Using Pauli propagation, we (Matteo) were able to compress Trotter circuits for systems up to 30x30 with depth reductions of x2 to x13.
Link: arxiv.org/abs/2507.01883
"Circuit compression for 2D quantum dynamics"
Using Pauli propagation, we (Matteo) were able to compress Trotter circuits for systems up to 30x30 with depth reductions of x2 to x13.
Link: arxiv.org/abs/2507.01883
PauliPropagation.jl is open source library that you can use to approximately simulate quantum circuits
We explain the nitty gritty of how these algorithms work in practise in our latest companion paper
🧵👇
PauliPropagation.jl is open source library that you can use to approximately simulate quantum circuits
We explain the nitty gritty of how these algorithms work in practise in our latest companion paper
🧵👇
We propose a framework for the quantum-enhanced classical simulation of small expectation landscape "patches".
In short: You can do more classically than you might have thought.
scirate.com/arxiv/2411.1...
#quantum
We propose a framework for the quantum-enhanced classical simulation of small expectation landscape "patches".
In short: You can do more classically than you might have thought.
scirate.com/arxiv/2411.1...
#quantum