Experimental demonstration of higher-order Laguerre-Gauss mode interferometry
arXiv:1005.2990 · doi:10.1103/PhysRevD.82.012002
Abstract
The compatibility of higher-order Laguerre-Gauss (LG) modes with interferometric technologies commonly used in gravitational wave detectors is investigated. In this paper we present the first experimental results concerning the performance of the LG33 mode in optical resonators. We show that the Pound-Drever-Hall error signal for a LG33 mode in a linear optical resonator is identical to that of the more commonly used LG00 mode, and demonstrate the feedback control of the resonator with a LG33 mode. We succeeded to increase the mode purity of a LG33 mode generated using a spatial-light modulator from 51% to 99% upon transmission through a linear optical resonator. We further report the experimental verification that a triangular optical resonator does not transmit helical LG modes.
References in corpus (2)
Cited by in corpus (13)
- Higher-order Laguerre-Gauss mode generation and interferometry for gravitational wave detectors
- Higher order Laguerre-Gauss mode degeneracy in realistic, high finesse cavities
- Generation of high-purity higher-order Laguerre-Gauss beams at high laser power
- Generation of very high-order high purity Gaussian modes via spatial light modulation
- Effects of Mirror Aberrations on Laguerre-Gaussian Beams in Interferometric Gravitational-Wave Detectors
- Higher-order Hermite-Gauss modes as a robust flat beam in interferometric gravitational wave detectors
- Radial mode dependence of optical beam shifts
- Experimental demonstrations of alignment and mode matching in optical cavities with higher-order Hermite-Gauss modes
- Single-mode squeezing in arbitrary spatial modes
- Misalignment and mode mismatch error signals for higher-order Hermite-Gauss modes from two sensing schemes
- Numerical analysis of LG33 second harmonic generation in comparison to the LG00 case
- Thermal Deformation Reduction in High-Power Interferometry with Higher-Order Laser Modes
- Generation of the Squeezed State with an Arbitrary Complex Amplitude Distribution