Internal thermal noise in the LIGO test masses : a direct approach
arXiv:gr-qc/9707013 · doi:10.1103/PhysRevD.57.659
Abstract
The internal thermal noise in LIGO's test masses is analyzed by a new technique, a direct application of the Fluctuation-Dissipation Theorem to LIGO's readout observable, (longitudinal position of test-mass face, weighted by laser beam's Gaussian profile). Previous analyses, which relied on a normal-mode decomposition of the test-mass motion, were valid only if the dissipation is uniformally distributed over the test-mass interior, and they converged reliably to a final answer only when the beam size was a non-negligible fraction of the test-mass cross section. This paper's direct analysis, by contrast, can handle inhomogeneous dissipation and arbitrary beam sizes. In the domain of validity of the previous analysis, the two methods give the same answer for , the spectral density of thermal noise, to within expected accuracy. The new analysis predicts that thermal noise due to dissipation concentrated in the test mass's front face (e.g. due to mirror coating) scales as , by contrast with homogeneous dissipation, which scales as ( is the beam radius); so surface dissipation could become significant for small beam sizes.
6 pages, RevTex, 1 figure
Cited by in corpus (162)
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Characterization of the LIGO detectors during their sixth science run
- LIGO: The Laser Interferometer Gravitational-Wave Observatory
- Detector configuration of KAGRA - the Japanese cryogenic gravitational-wave detector
- GW150914: The Advanced LIGO Detectors in the Era of First Discoveries
- The Sensitivity of the Advanced LIGO Detectors at the Beginning of Gravitational Wave Astronomy
- Making optical atomic clocks more stable with level laser stabilization
- Sensitivity and Performance of the Advanced LIGO Detectors in the Third Observing Run
- Thermal noise in interferometric gravitational wave detectors due to dielectric optical coatings
- Detector Description and Performance for the First Coincidence Observations between LIGO and GEO
- Gravitational Radiation Detection with Laser Interferometry
- Macroscopic Quantum Mechanics: Theory and Experimental Concepts of Optomechanics
- Thermodynamical fluctuations and photo-thermal shot noise in gravitational wave antennae
- Gravitational Wave Detection by Interferometry (Ground and Space)
- Quantum Measurement Theory in Gravitational-Wave Detectors
- A Gravitational Wave Detector with Cosmological Reach
- Mechanical Loss in Tantala/Silica Dielectric Mirror Coatings
- An Atomic Gravitational Wave Interferometric Sensor in Low Earth Orbit (AGIS-LEO)
- Tuning the Thermal Expansion Properties of Optical Reference Cavities with Fused Silica Mirrors
- Macroscopic Quantum Mechanics in a Classical Spacetime
- Thermoelastic Noise and Homogeneous Thermal Noise in Finite Sized Gravitational-Wave Test Masses
- Thermo-optic noise in coated mirrors for high-precision optical measurements
- Thermal noise in optical cavities revisited
- The stochastic dynamics of nanoscale mechanical oscillators immersed in a viscous fluid
- Amorphous optical coatings of present gravitational-wave interferometers
- Thermoelastic effects at low temperatures and quantum limits in displacement measurements
- Realization of a monolithic high-reflectivity cavity mirror from a single silicon crystal
- Advanced LIGO detector performance in the fourth observing run
- Frequency measurements of superradiance from the strontium clock transition
- Higher-order Laguerre-Gauss mode generation and interferometry for gravitational wave detectors
- Thermoelastic dissipation in inhomogeneous media: loss measurements and displacement noise in coated test masses for interferometric gravitational wave detectors
- Frequency and surface dependence of the mechanical loss in fused silica
- Review of the Advanced LIGO gravitational wave observatories leading to observing run four
- Mechanical loss in state-of-the-art amorphous optical coatings
- Thermodynamical fluctuations in optical mirror coatings
- Listening to the Universe with Gravitational-Wave Astronomy
- High-sensitivity optical measurement of mechanical Brownian motion
- Brownian Thermal Noise in Multilayer Coated Mirrors
- Prospects of higher-order Laguerre Gauss modes in future gravitational wave detectors
- Prospects for detecting gravitational waves at 5 Hz with ground-based detectors
- Low mechanical loss TiO:GeO coatings for reduced thermal noise in Gravitational Wave Interferometers
- On the excitation of f-modes and torsional modes by magnetar giant flares
- Thermal noise in half infinite mirrors with non-uniform loss: a slab of excess loss in a half infinite mirror
- Measurement of the mechanical loss of a cooled reflective coating for gravitational wave detection
- Thermal noises and noise compensation in high-reflection multilayer coating
- Thermal and back-action noises in dual-sphere gravitational-waves detectors
- Progress in the measurement and reduction of thermal noise in optical coatings for gravitational-wave detectors
- Fluctuation-dissipation theorem for thermo-refractive noise
- Optical Interferometers with Reduced Sensitivity to Thermal Noise
- The Search for Gravitational Waves
- Experimental measurement of photothermal effect in Fabry-Perot cavities
- Direct Measurement of Coating Thermal Noise in Optical Resonators
- Suppressing parametric instabilities in LIGO using low-noise acoustic mode dampers
- Thermal lensing in cryogenic sapphire substrates
- Reducing the mirrors coating noise in laser gravitational-wave antennae by means of double mirrors
- Direct Observation of Broadband Coating Thermal Noise in a Suspended Interferometer
- Einstein-Podolsky-Rosen - entangled motion of two massive objects
- Structure and morphology of low mechanical loss TiO-doped TaO
- Coherent Cancellation of Photothermal Noise in GaAs/AlGaAs Bragg Mirrors
- Thermal noise limited higher-order mode locking of a reference cavity
- Generation of very high-order high purity Gaussian modes via spatial light modulation
- Audio-band Coating Thermal Noise Measurement for Advanced LIGO with a Multi-mode Optical Resonator
- Excess noise and photo-induced effects in highly reflective crystalline mirror coatings
- Reducing the effect of thermal noise in optical cavities
- How to reduce the suspension thermal noise in LIGO without improving the Q's of the pendulum and violin modes
- Fundamental thermal noise limits for optical microcavities
- Optomechanical characterization of acoustic modes in a mirror
- Quantum sensing with milligram scale optomechanical systems
- Enhanced Medium Range Order in Vapor Deposited Germania Glasses at Elevated Temperatures
- Quantum limits and symphotonic states in free-mass gravitational-wave antennae
- Limits and prospects for long-baseline optical fiber interferometry
- Effects of Mirror Aberrations on Laguerre-Gaussian Beams in Interferometric Gravitational-Wave Detectors
- Optical and mechanical properties of ion-beam-sputtered NbO and TiO-NbO thin films for gravitational-wave interferometers
- Optimal Light Beams and Mirror Shapes for Future LIGO Interferometers
- Laser interferometry with translucent and absorbing mechanical oscillators
- Mechanical Ringdown Studies of Large-Area Substrate-Transferred GaAs/AlGaAs Crystalline Coatings
- ETpathfinder: a cryogenic testbed for interferometric gravitational-wave detectors
- Resonant Dampers for Parametric Instabilities in Gravitational Wave Detectors
- Effect of interference on thermal noise and coating optimization in dielectric mirrors
- Quantum limit for laser interferometric gravitational wave detectors from optical dissipation
- Substrate-transferred GaAs/AlGaAs crystalline coatings for gravitational-wave detectors: A review of the state of the art
- Quantum correlation measurements in interferometric gravitational wave detectors
- A Direct Approach for the Fluctuation-Dissipation Theorem under Non-Equilibrium Steady-State Conditions
- Coating thermal noise of a finite-size cylindrical mirror
- Low thermal fluctuations in a system heated out of equilibrium
- Complete model of a spherical gravitational wave detector with capacitive transducers. Calibration and sensitivity optimization
- Thermo-refractive and thermo-chemical noise in the beamsplitter of GEO600 gravitational-wave interferometer
- Principles of wide bandwidth acoustic detectors and the single-mass DUAL detector
- Particle swarm optimization of the sensitivity of a cryogenic gravitational wave detector
- Optical Levitation of a Mirror for Reaching the Standard Quantum Limit
- Brownian Thermal Noise in Functional Optical Surfaces
- Highly reflective low-noise etalon-based meta-mirror
- Waveguide grating mirror in a fully suspended 10 meter Fabry-Perot cavity
- Mirror thermal noise in laser interferometer gravitational wave detectors operating at room and cryogenic temperature
- Calculation of thermal noise in grating reflectors
- Cryogenic payloads for the Einstein Telescope -- Baseline design with heat extraction, suspension thermal noise modelling and sensitivity analyses
- Silicon-nitride nanosensors toward room temperature quantum optomechanics
- High Performance Heat Conductor with Small Spring Constant for Cryogenic Applications
- Direct optical observations of surface thermal motions at sub-shot noise levels
- On the mechanical quality factors of cryogenic test masses from fused silica and crystalline quartz
- Photon Counting Interferometry to Detect Geontropic Space-Time Fluctuations with GQuEST
- Opportunities and limits of lunar gravitational-wave detection
- Effect of energy deposited by cosmic-ray particles on interferometric gravitational wave detectors
- Photo-Thermal Transfer Function of Dielectric Mirrors for Precision Measurements
- Silicon Nitride MOMS Oscillator for Room Temperature Quantum Optomechanics
- Inhomogeneous mechanical losses in micro-oscillators with high reflectivity coating
- Implications of the Quantum Noise Target for the Einstein Telescope Infrastructure Design
- The dependence of test-mass thermal noises on beam shape in gravitational-wave interferometers
- Reduction of coating thermal noise by using an etalon
- Reducing Thermal Noise in Future Gravitational Wave Detectors by employing Khalili Etalons
- Fundamental charge noise in electro-optic photonic integrated circuits
- Optical and mechanical properties of ion-beam-sputtered MgF thin films for gravitational-wave interferometers
- Eliminating Thermal Violin Spikes from LIGO Noise
- All-reflective coupling of two optical cavities with 3-port diffraction gratings
- Broadband Measurement of Coating Thermal Noise in Rigid Fabry-Perot Cavities
- Unified discontinuous Galerkin scheme for a large class of elliptic equations
- A method for the experimental measurement of bulk and shear loss angles in amorphous thin films
- Thermal noise of whispering gallery resonators
- Development of ion-beam sputtered silicon nitride thin films for low-noise mirror coatings of gravitational-wave detectors
- Numerically modeling Brownian thermal noise in amorphous and crystalline thin coatings
- Highly-efficient generation of coherent light at 2128 nm via degenerate optical-parametric oscillation
- Time-domain analysis of a dynamically tuned signal recycled interferometer for the detection of chirp gravitational waves from coalescing compact binaries
- Perspectives on Beam-Shaping Optimization for Thermal-Noise Reduction in Advanced Gravitational-Wave Interferometric Detectors: Bounds, Profiles, and Critical Parameters
- Thermorefringent noise in crystalline optical materials
- Creep events and creep noise in gravitational-wave interferometers: basic formalism and stationary limit
- Coating thermal noise for arbitrary shaped beams
- A theoretical approach to thermal noise caused by an inhomogeneously distributed loss -- Physical insight by the advanced modal expansion
- Unification of thermal and quantum noise in gravitational-wave detectors
- Astroseismology of neutron stars from gravitational waves in the limit of perfect measurement
- A New Class of Optical Beams for Large Baseline Interferometric Gravitational Wave Detectors
- Radiative Thermal Noise for Transmissive Optics in Gravitational-Wave Detectors
- Angular trapping of a linear-cavity mirror with an optical torsional spring
- Parametric instabilities in the LCGT arm cavity
- Ultrastable lasers: investigations of crystalline mirrors and closed cycle cooling at 124 K
- Potential mechanical loss mechanisms in bulk materials for future gravitational wave detectors
- Multi-mode Brownian Dynamics of a Nanomechanical Resonator in a Viscous Fluid
- High-accuracy numerical models of Brownian thermal noise in thin mirror coatings
- Revisiting Thermal Charge Carrier Refractive Noise in Semiconductor Optics for Gravitational-Wave Interferometers
- Advanced technologies for future ground-based, laser-interferometric gravitational wave detectors
- Extended equipartition in a mechanical system subject to a heat flow: the case of localised dissipation
- Folding Gravitational-Wave Interferometers
- GALILEO: Galactic Axion Laser Interferometer Leveraging Electro-Optics
- Researches on Non-standard Optics for Advanced Gravitational Waves Interferometers
- Thermal distortions of non-Gaussian beams in Fabry-Perot cavities
- Strategies to reduce the thermoelastic loss of multimaterial coated finite substrates
- Michelson interferometer with diffractively-coupled arm resonators in second-order Littrow configuration
- Diffractively coupled Fabry-Perot resonator with power-recycling
- Thermal noise of beam splitters in laser gravitational wave detectors
- Finite Mirror Effects in Advanced Interferometric Gravitational Wave Detectors
- Differential torsion sensor for direct detection of ultralight vector dark matter
- Thermal-noise Limits to the Frequency Stability of Burned Spectral Holes
- Optical response of a misaligned and suspended Fabry-Perot cavity
- Thermal noise of a plano-convex mirror
- Mirror Coating Thermal Noise Mitigation Using Multi-Spatial Mode Cavity Readout
- Characterization of ion-beam-sputtered AlF thin films for gravitational-wave interferometers
- From Heat Capacity to Coherence in Ultra-Narrow-Linewidth Solid-State Optical Emitters at Sub-Kelvin Temperatures
- Birefringence of AlGaAs/GaAs Coatings under Above-Band-Gap Illumination, GR Noise and Photo-Optic Transfer Function
- Partial compensation of thermal noise in the fundamental mode of an optical cavity
- Terrestrial Laser Interferometers
- Upper Limit to the Transverse to Longitudinal Motion Coupling of a Waveguide Mirror
- Thermal noise in complex systems
- Wave Front Sensing demodulated at the difference frequency between two phase-modulation sidebands in a compound interferometer configuration for a gravitational-wave detector