Skip to content

Nitrogen Vacancy Centers in Hexagonal Diamond Exhibit Long Coherence Times

Gabriel Kumar, Siyuan Chen, Victor Wen-zhe Yu, Giulia Galli

cond-mat.mtrl-sciarXiv:2608.05320

Abstract

We show that negatively charged nitrogen-vacancy (NV) centers in the hexagonal diamond polymorph lonsdaleite offer a route to spin qubits with enhanced coherence relative to their cubic-diamond counterparts. Using first-principles calculations, we examine two distinct defect configurations, AA, with the same symmetry as in cubic diamond and AB, with reduced symmetry. We find that the AB configuration of the NV center exhibits a finite transverse zero-field splitting, giving rise to an approximate fourfold enhancement of the Hahn-echo coherence time T2 at zero magnetic field. The AA configuration, by contrast, closely reproduces the electronic structure and coherence properties of the cubic NV center. We further characterize the many-body electronic structure, vertical excitation energies, and photoluminescence spectra of both configurations, providing spectral fingerprints for their experimental identification. Our results establish symmetry-broken NV centers in lonsdaleite as promising candidates for quantum sensing and information science applications.

Create a lesson

Paper details

Categories: cond-mat.mtrl-sci, physics.comp-ph, quant-ph

6 pages, 4 figures, data and codes uploaded on QRESP after final peer review complete