Speedmeters are known to be quantum non-demolition devices and, by potentially providing sensitivity beyond the standard quantum limit, become interesting for third generation gravitational wave detectors. Here we introduce a new configuration, the sloshing-Sagnac interferometer, and compare it to the more established ring-Sagnac interferometer. The sloshing-Sagnac interferometer is designed to provide improved quantum noise limited sensitivity and lower coating thermal noise than standard position meter interferometers employed in current gravitational wave detectors. We compare the quantum noise limited sensitivity of the ring-Sagnac and the sloshing-Sagnac interferometers, in the frequency range, from 5 Hz to 100 Hz, where they provide t...
The sensitivity of gravitational-wave detectors is limited in the high-frequency band by quantum sho...
By numerical simulation, we compare the performance of four speedmeter interferometer configurations...
The sensitivity of gravitational-wave detectors is limited in the high-frequency band by quantum sho...
Speedmeters are known to be quantum non-demolition devices and, by potentially providing sensitivity...
Speedmeters are known to be quantum non-demolition devices and, by potentially providing sensitivity...
Speedmeters are known to be quantum non-demolition devices and, by potentially providing sensitivity...
We propose a new optical configuration for an interferometric gravitational wave detector based on t...
It is planned that the next generation of laser interferometric gravitational-wave detectors will su...
By numerical simulation, we compare the performance of four speedmeter interferometer configurations...
The sensitivity of gravitational-wave detectors is limited in the high-frequency band by quantum sho...
By numerical simulation, we compare the performance of four speedmeter interferometer configurations...
By numerical simulation, we compare the performance of four speedmeter interferometer configurations...
By numerical simulation, we compare the performance of four speedmeter interferometer configurations...
By numerical simulation, we compare the performance of four speedmeter interferometer configurations...
The sensitivity of gravitational-wave detectors is limited in the high-frequency band by quantum sho...
The sensitivity of gravitational-wave detectors is limited in the high-frequency band by quantum sho...
By numerical simulation, we compare the performance of four speedmeter interferometer configurations...
The sensitivity of gravitational-wave detectors is limited in the high-frequency band by quantum sho...
Speedmeters are known to be quantum non-demolition devices and, by potentially providing sensitivity...
Speedmeters are known to be quantum non-demolition devices and, by potentially providing sensitivity...
Speedmeters are known to be quantum non-demolition devices and, by potentially providing sensitivity...
We propose a new optical configuration for an interferometric gravitational wave detector based on t...
It is planned that the next generation of laser interferometric gravitational-wave detectors will su...
By numerical simulation, we compare the performance of four speedmeter interferometer configurations...
The sensitivity of gravitational-wave detectors is limited in the high-frequency band by quantum sho...
By numerical simulation, we compare the performance of four speedmeter interferometer configurations...
By numerical simulation, we compare the performance of four speedmeter interferometer configurations...
By numerical simulation, we compare the performance of four speedmeter interferometer configurations...
By numerical simulation, we compare the performance of four speedmeter interferometer configurations...
The sensitivity of gravitational-wave detectors is limited in the high-frequency band by quantum sho...
The sensitivity of gravitational-wave detectors is limited in the high-frequency band by quantum sho...
By numerical simulation, we compare the performance of four speedmeter interferometer configurations...
The sensitivity of gravitational-wave detectors is limited in the high-frequency band by quantum sho...