Quantum enhanced feedback cooling of a mechanical oscillator using nonclassical light
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Researchers have made advancements in cooling mechanical systems to their quantum ground state using nonclassical light. The developments involve various approaches, including the use of nanorotors, levitated nanoparticles, and integrated mechanical resonators. The techniques employed include quantum enhanced feedback cooling, quantum reservoir engineering, and active-feedback quantum control, with some experiments reportedly achieving high-purity quantum optomechanics at room temperature.
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