On the development of the error model of gyroscopes based on the de Broglie waves
N. I. Krobka, N. V. Tribulev, D. A. Turkin
Abstract
N. I. Krobka, N. V. Tribulev, D. A. Turkin
Abstract
The brief overview of atom interferometers development for new generation of inertial sensitive elements on the de Broglie waves is presented. The transmission functions of atom interferometers (dependence of phase differences of counter propagating waves of interferometers from external factors (absolute rotation and acceleration of interferometer) and internal factors (ideology of construction of different types of atom interferometers)) are also discussed. The recommendations on elaboration of previously known transmission functions of atom interferometers are provided for the purpose of the development of the accurate error models of gyroscopes on de Broglie waves.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The brief overview of atom interferometers development for new generation of inertial sensitive elements on the de Broglie waves is presented. The transmission functions of atom interferometers (dependence of phase differences of counter propagating waves of interferometers from external factors (absolute rotation and acceleration of interferometer) and internal factors (ideology of construction of different types of atom interferometers)) are also discussed. The recommendations on elaboration of previously known transmission functions of atom interferometers are provided for the purpose of the development of the accurate error models of gyroscopes on de Broglie waves.
Key concepts: Matter wave, Astronomical interferometer, Atom interferometer, Physics, Interferometry, Gyroscope, Atom optics, Atom (system on chip)