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Quantum input-output theory for optical cavities with arbitrary coupling strength: Application to two-photon wave-packet shaping

机译:具有任意耦合强度的光腔的量子输入输出理论:在双光子波包整形中的应用

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We develop quantum-optical input-output theory for resonators with arbitrary coupling strength, and for input fields whose spectrum can be wider than the cavity free-spectral range, while ensuring that the field-operator commutator relations in space-time variables are correct. The cavity-field commutator exhibits a series of space-time "echoes," representing causal connections of certain space-time points by light propagation. We apply the theory to two-photon wave-packet shaping by cavity reflection, which displays a remarkable illustration of dispersion cancellation. We also show that the theory is amenable to inclusion of intracavity absorbing and emitting atoms, allowing, for example, dissipative losses within the cavity to be incorporated in a quantum mechanically correct way.
机译:我们开发了具有任意耦合强度的谐振器以及其光谱可比腔自由光谱范围宽的输入场的量子光学输入输出理论,同时确保时空变量中的场-算子换向器关系正确。腔场换向器表现出一系列时空“回波”,通过光传播表示某些时空点的因果关系。我们将该理论应用于通过腔反射的双光子波包整形,这显示了色散抵消的显着例证。我们还表明,该理论适用于包含腔内吸收和发射原子,例如允许以量子力学正确的方式合并腔内的耗散损耗。

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