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Titlebook: Exploring Macroscopic Quantum Mechanics in Optomechanical Devices; Haixing Miao Book 2012 Springer-Verlag Berlin Heidelberg 2012 Award win

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楼主: crusade
发表于 2025-3-28 18:36:53 | 显示全部楼层
Introduction,force, by measuring the displacement of a micro-mechanical cantilever; on the large scale, gravitational-wave (GW) detectors search for ripples in spacetime, by measuring the differential displacements of spatially-separated test masses induced by tiny gravitational tidal forces.
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Modifying Test-Mass Dynamics: Double Optical Spring,uble optical springs. We explore the frequency dependence of the optical spring effect. In particular, we show that the frequency dependence of double optical springs allows us to create a “negative inertia”, which cancels the positive inertia of the test-mass with the mechanical response significan
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MQM With Three-Mode Optomechanical Interactions,cavity modes are coupled to one mechanical mode through radiation pressure. This work is motivated by the investigations of three-mode parametric instability in large-scale gravitational-wave (GW) detectors with high-power optical cavities, as first pointed out by Braginsky et al. We realized that t
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Achieving the Ground State and Enhancing Optomechanical Entanglement,tomechanical devices, the cavity bandwidth needs to be smaller than the mechanical frequency. This is the so-called resolved-sideband or good-cavity limit. In this chapter, we provide a new but physically equivalent insight into the origin of such a limit: that is information loss due to a finite ca
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Universal Entanglement Between an Oscillator and Continuous Fields,which have finite degrees of freedom. In this chapter, we study the entanglement between a mechanical oscillator and a coherent continuous optical field which contains infinite degrees of freedom. This system is interesting because it lies in the heart of all optomechanical systems. With a rigorous
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Nonlinear Optomechanical System for Probing Mechanical Energy Quantization,otivated by the pioneering theoretical work of Santamore (Phys Rev B 70:144301, 2004) Martin and Zureck (Phys Rev Lett 98:120401, 2007), and by recent experimental work of Thompson et al. (Nature 452:72–75, 2008), we consider the quantum limit for probing mechanical energy quantization with mechanic
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