Floquet engineering of nonreciprocal light-induced dipolar interactions in tweezer arrays realizes beamsplitter, squeezing operations, negative-mass-like signatures, and tunable complex eigenfrequencies.
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A modulated driven-dissipative oscillator realizes non-Hermitian topological amplification and frequency conversion via a local winding number in synthetic frequency space.
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Floquet engineering of nonreciprocal light-induced dipolar interactions
Floquet engineering of nonreciprocal light-induced dipolar interactions in tweezer arrays realizes beamsplitter, squeezing operations, negative-mass-like signatures, and tunable complex eigenfrequencies.
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Floquet Topological Frequency-Converting Amplifier
A modulated driven-dissipative oscillator realizes non-Hermitian topological amplification and frequency conversion via a local winding number in synthetic frequency space.