collaborators

5 papers

quant-ph2026

Purcell-enhanced spin-phonon coupling with a single color center

Graham Joe, Michael Haas, Kazuhiro Kuruma +9

The radiative properties of atoms are inherently linked to their surrounding environment. Placing an electromagnetic resonator around atoms can enhance spontaneous emission, as sho…

physics.optics2026

Heterogeneously Integrated Diamond-on-Lithium Niobate Quantum Photonic Platform

Sophie W. Ding, Chang Jin, Zixi Li +9

Diamond photonics has enabled efficient interfaces for quantum memories and is predicted to be a critical component of quantum networks. However, scalable network architectures req…

cond-mat.mes-hall2026

Ultracoherent self-assembled diamond nanomechanics reveals superfluid dynamics

Guanhao Huang, Chang Jin, Sophie Weiyi Ding +9

From gravitational-wave detection, protein force microscopy, to exploration of quantum-classical boundaries, many anticipated discoveries in fundamental science require improving m…

quant-ph2025

Thin Film Lithium Niobate on Diamond (LiNDa) platform for Efficient Spin-Phonon Coupling

Zhujing Xu, Sophie Weiyi Ding, Eliza Cornell +7

Negatively charged silicon vacancy (SiV) center in diamonds are leading candidates for solid-state quantum memories that can be controlled using electromagnetic or acoustic waves.…

quant-ph2025

Purcell-enhanced emissions from diamond color centers in slow light photonic crystal waveguides

Sophie W. Ding, Chang Jin, Kazuhiro Kuruma +11

Quantum memories based on emitters with optically addressable spins rely on efficient photonic interfaces, often implemented as nanophotonic cavities with ideally narrow spectral l…