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arxiv: 1611.07484 · v2 · pith:T6EHLUNMnew · submitted 2016-11-22 · ❄️ cond-mat.mes-hall · quant-ph

Creating photon-number squeezed strong microwave fields by a Cooper-pair injection laser

classification ❄️ cond-mat.mes-hall quant-ph
keywords microwavesqueezedcooper-pairlaserphoton-numberdisorderfieldsradiation
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The use of artificial atoms as an active lasing medium opens a way to construct novel sources of nonclassical radiation. An example is the creation of photon-number squeezed light. Here we present a design of a laser consisting of multiple Cooper-pair transistors coupled to a microwave resonator. Over a broad range of experimentally realizable parameters, this laser creates photon-number squeezed microwave radiation, characterized by a Fano factor $F \ll 1$, at a very high resonator photon number. We investigate the impact of gate-charge disorder in a Cooper-pair transistor and show that the system can create squeezed strong microwave fields even in the presence of maximum disorder.

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