학술논문

A high sensitivity tool for geophysical applications: A geometrically locked Ring Laser Gyroscope
Document Type
Working Paper
Source
Appl. Opt. 61, 9256-9261 (2022)
Subject
Physics - Instrumentation and Detectors
Physics - Optics
Language
Abstract
This work demonstrates that a middle size ring laser gyroscope (RLG) can be a very sensitive and robust instrument for rotational seismology, even if it operates in a quite noisy environment. The RLG has a square cavity, $1.60\times 1.60$ m$^2$, and it lies in a plane orthogonal to the Earth rotational axis. The Fabry-Perot optical cavities along the diagonals of the square were accessed and their lengths were locked to a reference laser. Through a quite simple locking circuit, we were able to keep the sensor fully operative for 14 days. The obtained long term stability is of the order of 3~nanorad/s and the short term sensitivity close is to 2~nanorad/s$\cdot$Hz$^{-1/2}$. These results are limited only by the noisy environment, our laboratory is located in a building downtown.
Comment: 9 pages, 4 figures, 25 references