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quant-ph2025

Roadmap: 2D Materials for Quantum Technologies

Qimin Yan, Tongcang Li, Xingyu Gao +29

Two-dimensional (2D) materials have emerged as a versatile and powerful platform for quantum technologies, offering atomic-scale control, strong quantum confinement, and seamless i…

quant-ph2025

Room-temperature quantum entanglement in a van der Waals material

Xingyu Gao, Zhun Ge, Saakshi Dikshit +3

Entanglement is central to quantum science and technology. Atomic defects in two-dimensional (2D) van der Waals (vdW) materials offer exciting prospects for quantum sensing, with s…

quant-ph2025

Quantum sensing with a spin ensemble in a two-dimensional material

Souvik Biswas, Giovanni Scuri, Noah Huffman +12

Quantum sensing with solid-state spin defects has transformed nanoscale metrology, offering sub-wavelength spatial resolution with exceptional sensitivity to multiple signal types.…

quant-ph2025

Sub-Terahertz Spin Relaxation Dynamics of Boron-Vacancy Centers in Hexagonal Boron Nitride

Abhishek Bharatbhai Solanki, Yueh-Chun Wu, Hamza Ather +12

Quantum sensors based on spin-defect relaxation have become powerful tools for detecting faint magnetic signals, yet their operation has remained largely confined to low magnetic f…

quant-ph2025

Coherent Spins in van der Waals Semiconductor GeS2 at Ambient Conditions

Sumukh Vaidya, Xingyu Gao, Saakshi Dikshit +5

Optically active spin defects in van der Waals (vdW) materials have recently emerged as versatile quantum sensors, enabling applications from nanoscale magnetic field detection to…

quant-ph2025

Spin-State Selective Excitation in Spin Defects of Hexagonal Boron Nitride

Mohammad Abdullah Sadi, Luca Basso, David A Fehr +8

Hexagonal boron nitride (hBN) has emerged as a promising two-dimensional platform for quantum sensing, due to its optically addressable spin defects, such as the negatively charged…