Predictive tracking of the NV center based on external temperature sensors

M Manpreet Singh Jattana (Modular Supercomputing and Quantum Computing, Goethe University Frankfurt 1 , Kettenhofweg 139, 60325 Frankfurt am Main,) T Thomas Lippert (Modular Supercomputing and Quantum Computing, Goethe University Frankfurt 1 , Kettenhofweg 139, 60325 Frankfurt am Main,)

Abstract

We report an experimental design where the position and resonance frequency of the nitrogen vacancy (NV) in a diamond are correlated with the room temperature. A simple model trained on the interpolated correlation data predicts both quantities. The predictive tracking of the NV's location enables continuous operation of the NV quantum computer under ambient conditions for a week without recalibration.

Article Details

Volume / Issue Vol. 127, Issue 22
Published December 01, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (2)

M

Manpreet Singh Jattana

Modular Supercomputing and Quantum Computing, Goethe University Frankfurt 1 , Kettenhofweg 139, 60325 Frankfurt am Main,

T

Thomas Lippert

Modular Supercomputing and Quantum Computing, Goethe University Frankfurt 1 , Kettenhofweg 139, 60325 Frankfurt am Main,