activity
20082026
most citedCoherence of single spins coupled to a nuclear spin bath of varying density

228 citations · 579 across the 12 of their papers we have counts for

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quant-ph2025

Photoelectrical detection and characterization of divacancy and PL5-PL7 spins in silicon carbide

Naoya Morioka, Tetsuri Nishikawa, Hiroshi Abe +2

Photoelectrical detection of magnetic resonance (PDMR) offers a scalable alternative to optical readout of spin defects in semiconductors and is particularly promising for near-inf…

quant-ph2025

Hybrid-spin decoupling for noise-resilient DC quantum sensing

So Chigusa, Masashi Hazumi, Ernst David Herbschleb +3

The excellent sensitivities of quantum sensors are a double-edged sword: minuscule quantities can be observed, but any undesired signal acts as noise. This is challenging when dete…

quant-ph2024

Entanglement-enhanced AC magnetometry in the presence of Markovian noises

Thanaporn Sichanugrist, Hajime Fukuda, Takeo Moroi +5

Entanglement is a resource to improve the sensitivity of quantum sensors. In an ideal case, using an entangled state as a probe to detect target fields, we can beat the standard qu…

quant-ph202214 cited

Low-frequency quantum sensing

E. D. Herbschleb, I. Ohki, K. Morita +5

Exquisite sensitivities are a prominent advantage of quantum sensors. Ramsey sequences allow precise measurement of direct current fields, while Hahn-echo-like sequences measure al…

quant-ph2020

Electrical Control for Extension of Ramsey Spin Coherence Time of Ion-Implanted Nitrogen Vacancy Centers in diamond

S. Kobayashi, Y. Matsuzaki, H. Morishita +4

The extension of the spin coherence times is a crucial issue for quantum information and quantum sensing. In solid state systems, suppressing noises with various techniques have be…

quant-ph2020

Control of all the transitions between ground state manifolds of nitrogen vacancy centers in diamonds by applying external magnetic driving fields

Tatsuma Yamaguchi, Yuichiro Matsuzaki, Soya Saijo +3

Nitrogen vacancy (NV) centers in diamonds is a promising system for quantum information processing and quantum sensing, and the control of the quantum state is essential for practi…