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most citedMinute-long quantum coherence enabled by electrical depletion of magnetic noise

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quant-ph2026

A First-principles Computational Framework for Quantum Decoherence in Complex Diamond Spin Environments

Huijin Park, Ha-young Jeong, Hyeonsu Kim +6

Quantum decoherence induced by defects remains a major limitation for solid-state quantum technologies, yet predicting decoherence in realistic materials remains computationally ch…

quant-ph20262 cited

Minute-long quantum coherence enabled by electrical depletion of magnetic noise

Cyrus Zeledon, Benjamin Pingault, Jonathan C. Marcks +13

The paper demonstrates that applying an electrical bias to an isotopically purified SiC p‑i‑n diode can deplete magnetic noise, extending the coherence and relaxation times of embe…

quant-ph2025

Understanding Surface-Induced Decoherence of NV Centers in Diamond

Jonah Nagura, Mykyta Onizhuk, Giulia Galli

Nitrogen vacancy centers (NV) in proximity to diamond surfaces are promising nanoscale quantum sensors. However, their coherence properties are negatively affected by magnetic and…

quant-ph2025

Spin decoherence dynamics of Er in CeO film

Sagar Kumar Seth, Jonah Nagura, Vrindaa Somjit +10

Developing telecom-compatible spin-photon interfaces is essential towards scalable quantum networks. Erbium ions (Er) exhibit a unique combination of a telecom (1.5 m) o…

quant-ph2025

High-throughput spin-bath characterization of spin-defects in semiconductors

Abigail N. Poteshman, Mykyta Onizhuk, Christopher Egerstrom +4

Detailed knowledge of the local environments of spin-defects in semiconductors, such as nitrogen vacancy (NV) centers in diamond or divacancies in silicon carbide, is crucial for o…

quant-ph2025

Decoherence of solid-state spin qubits: a computational perspective

Mykyta Onizhuk, Giulia Galli

The usefulness of solid-state spins in quantum technologies depends on how long they can remain in a coherent superposition of quantum states. This Colloquium discusses how first-p…