Inertia measurement device and method based on diamond NV color center under high magnetic field

An inertial measurement device and diamond technology, applied in the field of inertial measurement, can solve problems such as limitations, and achieve the effects of simple structure, accurate adjustment, and extension of spin coherence time

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Problems solved by technology

[0005] Fang Jiancheng, Zhang Chen and others invented a color center diamond gyroscope based on the inertial rotation measurement realized by electron spin polarization, and the spin coherenc...

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  • Inertia measurement device and method based on diamond NV color center under high magnetic field
  • Inertia measurement device and method based on diamond NV color center under high magnetic field
  • Inertia measurement device and method based on diamond NV color center under high magnetic field

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Embodiment Construction

[0047] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by persons of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.

[0048] figure 1 An inertial measurement device based on a diamond NV color center is shown, including a pulsed laser generating part, a pulsed microwave generating part, a sample and its manipulation part, and a signal acquisition and data processing part;

[0049] The pulse laser generating part includes a light source 1, a first lens 2, an optical switch 3, a second lens 4, a pulse generator 13, and a light intensity adjustment component 5. The optical ...

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Abstract

The invention discloses an inertia measurement device and method based on a diamond NV color center under a high magnetic field. The method adopts a diamond material containing a high-concentration nitrogen-vacancy (NV) color center as a sensitive element, laser and the about 500 gauss of high magnetic field are used for achieving the polarization of nuclear angular momentum, and pulse laser and pulse microwave are used for achieving the operation, control and detection of the diamond NV color center, thereby achieving the measurement of inertial rotation. Compared with the inertial rotation measurement by using electron spin, the measurement sensitivity is significantly improved through nuclear polarization, it is of great value for the development of an inertial measurement system basedon a quantum theory, and the device serves for various fields in the future, especially for civil miniaturized inertial navigation and attitude determination systems.

Description

technical field [0001] The invention relates to the technical field of inertial measurement, in particular to an inertial measurement device and method based on a diamond NV color center under a strong magnetic field, which can be extended and applied to other quantum systems. Background technique [0002] In recent years, diamond NV color center materials have been widely used in quantum computing, quantum measurement and other fields. The sensitivity δω of the diamond NV color center applied to the measurement of rotational angular velocity is expressed as follows: [0003] [0004] where R represents the contrast ratio, η represents the fluorescence collection efficiency, N represents the number of spins involved in the measurement, and T c represents the spin coherence time, t m Indicates the total measurement time. Obviously the total measurement time t m The larger the value is, the better the angular velocity measurement sensitivity is, and the total measuremen...

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Application Information

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IPC IPC(8): G01C19/58
CPCG01C19/58
Inventor 房建成柳治张冀星张宁徐丽霞袁珩
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