TY - JOUR
T1 - Electronic and Magneto-Optical Properties of the Molybdenum-Vacancy Center in Zirconia and Its Qubit Applications
AU - Bian, Guodong
AU - Xu, Lixia
AU - Zhang, Ning
AU - Zhang, Jixing
AU - Fan, Pengcheng
AU - Li, Mingxin
AU - Liu, Yuchen
AU - Wang, Hailong
AU - Zhang, Qianfan
AU - Li, Jichao
AU - Yuan, Heng
N1 - Publisher Copyright:
Copyright © 2020 American Chemical Society.
PY - 2020/8/27
Y1 - 2020/8/27
N2 - The neutral molybdenum-vacancy (VOMoZr) center in cubic zirconia was selected to expand the taxonomy of available defective systems acting as a qubit. To theoretically prove the feasibility of its qubit applications, investigation of the electronic and magneto-optical properties of the neutral VOMoZr center was carried out via first-principles calculations. The center possesses a trigonal symmetry (C3v) with a spin-triplet ground state (GS). The molecular orbital combinations were qualitatively analyzed by using the group theory. For guiding the qubit-specific manipulation, its GS zero-field splitting was investigated and measured to be 2208.29 MHz, its zero-phonon line was located at 1.03 eV, and the Stoke and anti-Stoke shifts were at 201.8 and 136.5 meV, respectively. This study shows that the neutral VOMoZr center is competent for a qubit and paves the way toward the further implementation of qubit applications based on the neutral VOMoZr center.
AB - The neutral molybdenum-vacancy (VOMoZr) center in cubic zirconia was selected to expand the taxonomy of available defective systems acting as a qubit. To theoretically prove the feasibility of its qubit applications, investigation of the electronic and magneto-optical properties of the neutral VOMoZr center was carried out via first-principles calculations. The center possesses a trigonal symmetry (C3v) with a spin-triplet ground state (GS). The molecular orbital combinations were qualitatively analyzed by using the group theory. For guiding the qubit-specific manipulation, its GS zero-field splitting was investigated and measured to be 2208.29 MHz, its zero-phonon line was located at 1.03 eV, and the Stoke and anti-Stoke shifts were at 201.8 and 136.5 meV, respectively. This study shows that the neutral VOMoZr center is competent for a qubit and paves the way toward the further implementation of qubit applications based on the neutral VOMoZr center.
UR - https://www.scopus.com/pages/publications/85093518227
U2 - 10.1021/acs.jpcc.0c05387
DO - 10.1021/acs.jpcc.0c05387
M3 - 文章
AN - SCOPUS:85093518227
SN - 1932-7447
VL - 124
SP - 18707
EP - 18713
JO - Journal of Physical Chemistry C
JF - Journal of Physical Chemistry C
IS - 34
ER -