The sensitivity achieved by large ring-laser gyroscopes will make it possible to detect faint relativistic effects related to the rotation of the Earth's mass. This task requires a strict control of the ring cavity geometry (shape and orientation), which can be performed by a novel network of portable heterodyne interferometers, capable of measuring the absolute distance betweeen two retro-reflectors with a nominal accuracy better than 1nm. First steps have been taken towards the realization of this device and a starting prototype of distance gauge is under development and test
Large-scale ring laser gyroscopes are highly sensitive rotation sensors whose operating principle is...
Two ring laser gyroscopes are being developed by the INFN in view of fundamental Physics application...
The paper discusses the optimal conguration of one or more ring lasers to be used for measuring the...
The sensitivity achieved by large ring-laser gyroscopes will make it possible to detect faint relati...
Active control of the geometrical parameters of large ring-lasers arrays is a challenging task, requ...
We present here the design, implementation and characterization of a heterodyne laser interferometer...
A ring laser gyroscope (gyro) is an active laser interferometer designed to sense rotation through t...
The Gross Ring G is a square ring laser gyroscope, built as a monolithic Zerodur structure with 4 m ...
Active control of the geometrical parameters of large ring-lasers arrays is a challenging task, requ...
Inertial sensors are important at application level and also in fundamental physics. Ring laser gyro...
Large frame ring laser gyroscopes are top sensitivity inertial sensors able to measure absolute angu...
An apparatus for high precision angle metrology, based on a mid-scale ring laser gyroscope, is in de...
Large-frame ring laser gyroscopes are extremely sensitive inertial detectors of rotational motion. W...
Light is a good probe for general relativistic effects. Exploiting the asymmetry of the propagation ...
Ring laser (RL) gyroscopes are, at present, the most precise sensors of absolute angular velocity. I...
Large-scale ring laser gyroscopes are highly sensitive rotation sensors whose operating principle is...
Two ring laser gyroscopes are being developed by the INFN in view of fundamental Physics application...
The paper discusses the optimal conguration of one or more ring lasers to be used for measuring the...
The sensitivity achieved by large ring-laser gyroscopes will make it possible to detect faint relati...
Active control of the geometrical parameters of large ring-lasers arrays is a challenging task, requ...
We present here the design, implementation and characterization of a heterodyne laser interferometer...
A ring laser gyroscope (gyro) is an active laser interferometer designed to sense rotation through t...
The Gross Ring G is a square ring laser gyroscope, built as a monolithic Zerodur structure with 4 m ...
Active control of the geometrical parameters of large ring-lasers arrays is a challenging task, requ...
Inertial sensors are important at application level and also in fundamental physics. Ring laser gyro...
Large frame ring laser gyroscopes are top sensitivity inertial sensors able to measure absolute angu...
An apparatus for high precision angle metrology, based on a mid-scale ring laser gyroscope, is in de...
Large-frame ring laser gyroscopes are extremely sensitive inertial detectors of rotational motion. W...
Light is a good probe for general relativistic effects. Exploiting the asymmetry of the propagation ...
Ring laser (RL) gyroscopes are, at present, the most precise sensors of absolute angular velocity. I...
Large-scale ring laser gyroscopes are highly sensitive rotation sensors whose operating principle is...
Two ring laser gyroscopes are being developed by the INFN in view of fundamental Physics application...
The paper discusses the optimal conguration of one or more ring lasers to be used for measuring the...