Accelerometers for space applications are typically based on a capacitive readout. Here we present the design of an accelerometer based on a classical mass spring mechanical system with an interferometric readout. The heterodyne interferometer is completely fiber based with a 1064 nm diode laser source and has a subpicometer resolution at 1 Hz. We present and discuss the design and the characterization of the interferometer, the foreseen performances of the whole accelerometer and the characterization strategies of the same
Displacement measuring interferometry is a crucial component in metrology applications. In this pape...
The readout system of a new very low noise low-frequency, force-feedback accelerometer is presented....
Nowadays, sensors’ resolution limits their performance at low frequency which reduces their operatin...
Acceleration measurements are needed to various levels of sensitivity for almost all space missions ...
Geodesic missions require precise accelerometers to improve the knowledge of the reference frame use...
The advancement of a compact optomechanical inertial sensor with ultra-high acceleration sensitivity...
The techniques of laser cooling combined with atom interferometry make possible the realization of v...
For the measurement of the acceleration due to gravity, INRiM developed a transportable ballistic ri...
Accelerometers are a vital component in inertial sensing and geodesy, gravitational physics, seismic...
We present a novel inertial sensor designed and developed at Nikhef that features an interferometric...
For high-impact devices, subsequent vibrations have as much influence on the deterioration of the me...
Submitted by Regina Mello (mrmello@inmetro.gov.br) on 2011-02-11T11:10:38Z No. of bitstreams: 1 2006...
peer reviewedFor many applications, there is an increasing demand for low cost, high resolution iner...
The present design concepts for a Laser Gravitational Wave Observatory in Space are described. Laser...
Small, lightweight angular accelerometer performs reliably when subjected to harsh temperature and v...
Displacement measuring interferometry is a crucial component in metrology applications. In this pape...
The readout system of a new very low noise low-frequency, force-feedback accelerometer is presented....
Nowadays, sensors’ resolution limits their performance at low frequency which reduces their operatin...
Acceleration measurements are needed to various levels of sensitivity for almost all space missions ...
Geodesic missions require precise accelerometers to improve the knowledge of the reference frame use...
The advancement of a compact optomechanical inertial sensor with ultra-high acceleration sensitivity...
The techniques of laser cooling combined with atom interferometry make possible the realization of v...
For the measurement of the acceleration due to gravity, INRiM developed a transportable ballistic ri...
Accelerometers are a vital component in inertial sensing and geodesy, gravitational physics, seismic...
We present a novel inertial sensor designed and developed at Nikhef that features an interferometric...
For high-impact devices, subsequent vibrations have as much influence on the deterioration of the me...
Submitted by Regina Mello (mrmello@inmetro.gov.br) on 2011-02-11T11:10:38Z No. of bitstreams: 1 2006...
peer reviewedFor many applications, there is an increasing demand for low cost, high resolution iner...
The present design concepts for a Laser Gravitational Wave Observatory in Space are described. Laser...
Small, lightweight angular accelerometer performs reliably when subjected to harsh temperature and v...
Displacement measuring interferometry is a crucial component in metrology applications. In this pape...
The readout system of a new very low noise low-frequency, force-feedback accelerometer is presented....
Nowadays, sensors’ resolution limits their performance at low frequency which reduces their operatin...