activity
20242026
most citedPhotoelectrical detection and characterization of divacancy and PL5-PL7 spins in silicon carbide

2 citations · 2 across the 4 of their papers we have counts for

collaborators

9 papers

physics.ins-det2026

Enhanced Temperature Sensitivity in Ensemble NV Centers through Improved Optically Detected Magnetic Resonance Spectral Modeling

Yuki S. Kato, Shingo Sotoma, Keisuke Fujita +5

Nitrogen-vacancy (NV) center ensembles provide a powerful platform for high-precision temperature sensing, with ongoing efforts to further enhance their measurement performance. In…

quant-ph2026

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-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…

cond-mat.mes-hall2025

Photoionization current spectroscopy of individual silicon vacancies in silicon carbide

Kazuki Okajima, Tetsuri Nishikawa, Hiroshi Abe +5

Defect charge-state dynamics are central to both spin-photon interfaces and photoelectrical spin readout. Despite the significance of silicon vacancies (V1/V2) in silicon carbide (…

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…

hep-ph2025

Beyond Qubits: Multilevel Quantum Sensing for Dark Matter

Xiaolin Ma, Volodymyr Takhistov, Norikazu Mizuochi +1

Quantum sensing with qubits has advanced fundamental physics searches, but higher dimensional systems offer untapped potential. We present a universal qutrit framework that yields…