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Titlebook: Cavity Optomechanics; Nano- and Micromecha Markus Aspelmeyer,Tobias J. Kippenberg,Florian Mar Book 2014 Springer-Verlag Berlin Heidelberg 2

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Microwave-Frequency Mechanical Resonators Operated in the Quantum Limit,ructure was cooled in a dilution refrigerator to . mK. The resonator had a fundamental dilatational resonance frequency in excess of 6 GHz, so once cooled to this temperature, the number of thermal phonons at this frequency is vanishingly small. This achievement is a direct consequence of the high r
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Hybrid Mechanical Systems,ate spin qubits, or superconducting devices. We summarize and compare different coupling schemes and describe first experimental implementations. Hybrid mechanical systems enable new approaches to quantum control of mechanical objects, precision sensing, and quantum information processing.
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Cavity Optomechanics978-3-642-55312-7Series ISSN 2364-9054 Series E-ISSN 2364-9062
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https://doi.org/10.1007/978-3-8349-9724-1d states, entangled states or states with negative Wigner function, and the nonclassicality can refer either to light, to mechanics, or to both, light and mechanics. In all protocols nonclassicality arises from a strong optomechanical coupling. Some protocols rely in addition on homodyne detection or photon counting of light.
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https://doi.org/10.1007/978-3-8349-9865-1ate spin qubits, or superconducting devices. We summarize and compare different coupling schemes and describe first experimental implementations. Hybrid mechanical systems enable new approaches to quantum control of mechanical objects, precision sensing, and quantum information processing.
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https://doi.org/10.1007/978-3-8349-9803-3 increased the capability to exploit radiation-pressure effects on such structures. This chapter summarizes the current state-of-the-art in the performance of suspended (micro-)mirrors for cavity optomechanics experiments in terms of their optical and mechanical quality, and highlights some of the m
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