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20152025
most citedTin-Vacancy Quantum Emitters in Diamond

335 citations · 344 across the 11 of their papers we have counts for

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quant-ph2025

Optical charge state manipulation of lead-vacancy centers in diamond

Yiyang Chen, Yoshiyuki Miyamoto, Eiki Ota +5

Group-IV vacancy centers in diamond exhibit excellent optical and spin coherence properties, making them highly promising and scalable spin qubit candidates. Since only specific ch…

quant-ph2025

Current comparator for both AC and DC ratio measurements with 10-8-level accuracy

Hidekazu Muramatsu, Yuta Kainuma, Hiromitsu Kato +11

Accurate measurements of alternating current (AC) and direct current(DC) ratios are fundamental to electric power metrology. However, conventional current comparators for AC and DC…

quant-ph2025

Narrow Inhomogeneous Distribution and Charge State Stabilization of Lead-Vacancy Centers in Diamond

Ryotaro Abe, Peng Wang, Takashi Taniguchi +4

Lead-vacancy (PbV) centers in diamond with a large ground state splitting are expected to be a building block of quantum network nodes. Due to the heaviness of the Pb atom, it is c…

quant-ph2024

Charge state transition of spectrally stabilized tin-vacancy centers in diamond

Keita Ikeda, Yiyang Chen, Peng Wang +5

Solid-state quantum emitters are an important platform for quantum information processing. The fabrication of the emitters with stable photon frequency and narrow linewidth is a fu…

quant-ph2021

Low-Temperature Spectroscopic Investigation of Lead-Vacancy Centers in Diamond Fabricated by High-Pressure and High-Temperature Treatment

Peng Wang, Takashi Taniguchi, Yoshiyuki Miyamoto +2

We report the optical observation of lead-vacancy (PbV) centers in diamond fabricated by Pb ion implantation and subsequent high-temperature annealing (2100 °C) under high pressure…

quant-ph2019

Spectroscopic Investigations of Negatively Charged Tin-Vacancy Centres in Diamond

Johannes Görlitz, Dennis Herrmann, Gergő Thiering +9

The recently discovered negatively charged tin-vacancy centre in diamond is a promising candidate for applications in quantum information processing (QIP). We here present a detail…