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20242026
most citedHigh-threshold, low-overhead and single-shot decodable fault-tolerant quantum memory

2 citations · 2 across the 2 of their papers we have counts for

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quant-ph2026

Stroboscopic Stabilization of Cat Qubits

Timo Hillmann, Franco Nori, Fernando Quijandría

Dissipatively stabilized cat qubits provide a promising route toward fault-tolerant quantum computation, exhibiting exponential suppression of bit-flip errors with increasing phase…

quant-ph20262 cited

High-threshold, low-overhead and single-shot decodable fault-tolerant quantum memory

Thomas R. Scruby, Timo Hillmann, Joschka Roffe

We present a new family of quantum low-density parity-check codes, which we call radial codes, obtained from the lifted product of a specific subset of classical quasi-cyclic codes…

quant-ph2025

Single-shot and measurement-based quantum error correction via fault complexes

Timo Hillmann, Guillaume Dauphinais, Ilan Tzitrin +1

Photonics provides a viable path to a scalable fault-tolerant quantum computer. The natural framework for this platform is measurement-based quantum computation, where fault-tolera…

quant-ph2025

Linear-optical quantum computation with arbitrary error-correcting codes

Blayney W. Walshe, Ben Q. Baragiola, Hugo Ferretti +11

High-rate quantum error correcting codes mitigate the imposing scale of fault-tolerant quantum computers but require efficient generation of non-local, many-body entanglement. We p…

quant-ph2024

Analog information decoding of bosonic quantum LDPC codes

Lucas Berent, Timo Hillmann, Jens Eisert +2

Quantum error correction is crucial for scalable quantum information processing applications. Traditional discrete-variable quantum codes that use multiple two-level systems to enc…