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Active tuning of hybridized modes in a heterogeneous photonic molecule

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arxiv 1912.08351 v1 pith:KQL4XYOJ submitted 2019-12-18 physics.optics

Active tuning of hybridized modes in a heterogeneous photonic molecule

classification physics.optics
keywords photonicheterogeneousopticalactiveactivelycavitycontrolcoupled
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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From fundamental discovery to practical application, advances in the optical and quantum sciences rely upon precise control of light-matter interactions. Systems of coupled optical cavities are ubiquitous in these efforts, yet design and active modification of the hybridized mode properties remains challenging. In this Letter, we demonstrate the ability to thermally control the degree of hybridization in a heterogeneous photonic molecule composed of a ring resonator strongly coupled to a nanobeam photonic crystal cavity. Combining theory and experiment, we show that the composition of the resulting super-modes can be actively tailored and we derive temperature-dependent analytic expressions for the super-mode profiles, frequencies, and volumes. This work illustrates the potential for actively tunable, designer photonic properties using heterogeneous optical cavity devices.

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