DOE OSTI · 1853034
Vector Electrometry in a Wide-Gap-Semiconductor Device Using a Spin-Ensemble Quantum Sensor
Abstract
Nitrogen-vacancy (N-V) centers in diamond work as a quantum electrometer. Using an ensemble state of N-V centers, we propose vector electrometry and demonstrate measurements in a diamond electronic device. A transverse electric field applied to the N-V axis under a high voltage is measured, while applying a transverse magnetic field. The response of the energy-level shift against the electric field is significantly enhanced compared with that against an axial magnetic field. Repeating the measurement of the transverse electric field for multiple N-V axes, our team obtains the components of the electric field generated in the device.
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Yang, Bang, Murooka, Takuya, Mizuno, Kosuke, Kim, Kwangsoo, Kato, Hiromitsu, Makino, Toshiharu, Ogura, Masahiko, Yamasaki, Satoshi, Schmidt, Marek E., Mizuta, Hiroshi, Yacoby, Amir, Hatano, Mutsuko, Iwasaki, Takayuki. 2020-10-27. Vector Electrometry in a Wide-Gap-Semiconductor Device Using a Spin-Ensemble Quantum Sensor. https://doi.org/10.1103/physrevapplied.14.044049
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