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Optically Detected Magnetic Resonance of Diamond Nitrogen-Vacancy Centers under Megabar Pressures

Authors :
Jian-Hong Dai
Yan-Xing Shang
Yong-Hong Yu
Yue Xu
Hui Yu
Fang Hong
Xiao-Hui Yu
Xin-Yu Pan
Gang-Qin Liu
Source :
Chinese Physics Letters. 39:117601
Publication Year :
2022
Publisher :
IOP Publishing, 2022.

Abstract

Megabar pressures are of crucial importance for cutting-edge studies of condensed matter physics and geophysics. With the development of diamond anvil cell (DAC), laboratory studies of high pressure have entered the megabar era for decades. However, it is still challenging to implement in situ magnetic sensing under ultrahigh pressures. In this work, we demonstrate optically detected magnetic resonance and coherent quantum control of diamond nitrogen-vacancy (NV) center, a promising quantum sensor inside the DAC, up to 1.4 Mbar. The pressure dependence of optical and spin properties of NV centers in diamond are quantified, and the evolution of an external magnetic field has been successfully tracked at about 80 GPa. These results shed new light on our understanding of diamond NV centers and pave the way for quantum sensing under extreme conditions.

Subjects

Subjects :
General Physics and Astronomy

Details

ISSN :
17413540 and 0256307X
Volume :
39
Database :
OpenAIRE
Journal :
Chinese Physics Letters
Accession number :
edsair.doi...........bfddd0b8826797a863d6ebf93cf4332f