A hybrid qubit-magnon system under microwave driving produces magnonic squeezed states with over 8 dB quadrature noise reduction and their symmetric/antisymmetric superpositions via qubit measurement.
Schnabel, Squeezed states of light and their applica- tions in laser interferometers, Phys
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Second quantization of the Liouville equation produces a Heisenberg equation for ancillary operators that suffices for nonadiabatic generation of ultra-highly squeezed states in Hermitian and non-Hermitian quantum systems.
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Generation of magnonic squeezed state and its superposition in a hybrid qubit-magnon system
A hybrid qubit-magnon system under microwave driving produces magnonic squeezed states with over 8 dB quadrature noise reduction and their symmetric/antisymmetric superpositions via qubit measurement.
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From Liouville equation to universal quantum control: A study of generating ultra highly squeezed states
Second quantization of the Liouville equation produces a Heisenberg equation for ancillary operators that suffices for nonadiabatic generation of ultra-highly squeezed states in Hermitian and non-Hermitian quantum systems.