5 papers
Continuous measurement-based holonomic quantum computation
Anirudh Lanka, Juan Garcia-Nila, Todd A. Brun
We propose a scheme to generate holonomies using the Quantum Zeno effect, enabling logical unitary operations on quantum stabilizer codes purely through measurements. The quantum e…
Measure and Forget Dynamics in Random Circuits
Yucheng He, Todd A. Brun
Unrecorded or ``forgetful'' measurements -- physically, a local dephasing channel -- can arise naturally as syndrome-measurement errors in fault-tolerant protocols and as uncontrol…
Optimizing continuous-time quantum error correction for arbitrary noise
Anirudh Lanka, Shashank Hegde, Todd A. Brun
We present a protocol using machine learning (ML) to simultaneously optimize the quantum error-correcting code space and the corresponding recovery map in the framework of continuo…
Bias-tailored single-shot quantum LDPC codes
Shixin Wu, Todd A. Brun, Daniel A. Lidar
Quantum hardware rarely suffers equal amounts of bit-flip () and phase-flip () errors; one type is often much more common than the other. A code that is ``bias-tailored'' can…
Continuous quantum correction on Markovian and Non-Markovian models
Juan Garcia Nila, Todd A. Brun
We investigate continuous quantum error correction, comparing performance under a Markovian error model to two distinct non-Markovian models. The first non-Markovian model involves…