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20202026
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quant-ph2026

Holonomic quantum gates via continuous measurement in bosonic codes: GKP and cat states

Juan Garcia-Nila, Anirudh Lanka, Todd A. Brun

We apply continuous measurement-based holonomic quantum computation (CMHQC) to bosonic quantum error-correcting codes and develop explicit protocols for both four-component cat cod…

quant-ph2026

Steering paths mid-flight for fault-tolerance in measurement-based holonomic gates

Anirudh Lanka, Juan Garcia-Nila, Todd A. Brun

Continuous measurement-based holonomic quantum computation provides a route to universal logical computation in quantum error correcting codes. We introduce a fault-tolerant framew…

quant-ph2025

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…

quant-ph2025

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…

quant-ph2023

Improving quantum dot based single-photon source with continuous measurements

Anirudh Lanka, Todd Brun

We propose a technique to improve the probability of single-photon emission with an electrically pumped quantum dot in an optical microcavity, by continuously monitoring the energy…

quant-ph2020

Testing of flag-based fault-tolerance on IBM quantum devices

Anirudh Lanka

It is hard to achieve a theoretical quantum advantage on NISQ devices. Besides the attempts to reduce error using error mitigation and dynamical decoupling, small quantum error cor…