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quant-ph2026

On chip, multifunctional quantum sensing using single spins in a van der Waals crystal

James Liddle-Wesolowski, Konosuke Shimazaki, Jiyun Kim +5

Nanoscale thermometry and magnetometry are in high demand across a wide range of scientific and technological applications. In this context, optically addressable spins in solids h…

quant-ph2025

Tip-enhanced quantum-sensing spectroscopy for bright and reconfigurable solid-state single-photon emitters

Hyeongwoo Lee, Taeyoung Moon, Hyeonmin Oh +5

Atom-like defects in hexagonal boron nitride (hBN) provide room-temperature single-photon emission and coherent spin states, making them attractive for quantum-computing and -sensi…

quant-ph2025

Generation of narrowband quantum emitters in hBN with optically addressable spins

Benjamin Whitefield, Helen Zhi Jie Zeng, James Liddle-Wesolowski +8

Electron spins coupled with optical transitions in solids stand out as a promising platform for developing spin-based quantum technologies. Recently, hexagonal boron nitride (hBN)…

quant-ph2024

Quantum Optics Applications of Hexagonal Boron Nitride Defects

Aslı Çakan, Chanaprom Cholsuk, Angus Gale +6

Hexagonal boron nitride (hBN) has emerged as a compelling platform for both classical and quantum technologies. In particular, the past decade has witnessed a surge of novel ideas…

quant-ph2024

Decoherence of Quantum Emitters in hexagonal Boron Nitride

Jake Horder, Dominic Scognamiglio, Nathan Coste +6

Coherent quantum emitters are a central resource for advanced quantum technologies. Hexagonal boron nitride (hBN) hosts a range of quantum emitters that can be engineered using tec…