The introduction of an optical resonator can enable efficient and precise interaction between a photon and a solid-state emitter. It facilitates the study of strong light-matter interaction, polaritonic physics and presents a powerful interface for quantum communication and computing. A pivotal aspect in the progress of light-matter interaction with solid-state systems is the challenge of combining the requirements of cryogenic temperature and high mechanical stability against vibrations while maintaining sufficient degrees of freedom for in situ tunability. Here, we present a fiber-based open Fabry-Pérot cavity in a closed-cycle cryostat exhibiting ultrahigh mechanical stability while providing wide-range tunability in all three spatial di...
We operate a fiber-based cavity with an inserted diamond membrane containing ensembles of silicon va...
Colloidal semiconductor nanoplatelets exhibit quantum size effects due to their thickness of only a ...
The emergent field of cavity quantum materials bridges collective many-body phenomena in solid state...
The introduction of an optical resonator can enable efficient and precise interaction between a phot...
We demonstrate a cryo-compatible, fully fiber-integrated, alignment-free optical microresonator. The...
We experimentally demonstrate tunable coupled cavities based upon open access zero-dimensional hemis...
Semiconducting nanocrystals in open-access microcavities are promising systems in which enhanced lig...
In this dissertation, we report on quantum optics experiments in a cavity quantum electrodynamics se...
Optomechanical interactions in high-finesse cavities offer a new promising route for the ongoing exp...
Tunable nanophotonic resonators are an essential building block for material-integrated photonic sys...
The peculiar laws of quantum physics offer a mechanism for exploring fundamentally new types of info...
Establishing a coherent interaction between a material resonance and an optical cavity is a necessar...
We report the development of a fiber-based, tunable optical cavity with open access. The cavity is o...
Recent experimental advances enable the manipulation of quantum matter by exploiting the quantum nat...
Microcavity exciton-polaritons, semiconductor quasiparticles that are a unique mixture of light and ...
We operate a fiber-based cavity with an inserted diamond membrane containing ensembles of silicon va...
Colloidal semiconductor nanoplatelets exhibit quantum size effects due to their thickness of only a ...
The emergent field of cavity quantum materials bridges collective many-body phenomena in solid state...
The introduction of an optical resonator can enable efficient and precise interaction between a phot...
We demonstrate a cryo-compatible, fully fiber-integrated, alignment-free optical microresonator. The...
We experimentally demonstrate tunable coupled cavities based upon open access zero-dimensional hemis...
Semiconducting nanocrystals in open-access microcavities are promising systems in which enhanced lig...
In this dissertation, we report on quantum optics experiments in a cavity quantum electrodynamics se...
Optomechanical interactions in high-finesse cavities offer a new promising route for the ongoing exp...
Tunable nanophotonic resonators are an essential building block for material-integrated photonic sys...
The peculiar laws of quantum physics offer a mechanism for exploring fundamentally new types of info...
Establishing a coherent interaction between a material resonance and an optical cavity is a necessar...
We report the development of a fiber-based, tunable optical cavity with open access. The cavity is o...
Recent experimental advances enable the manipulation of quantum matter by exploiting the quantum nat...
Microcavity exciton-polaritons, semiconductor quasiparticles that are a unique mixture of light and ...
We operate a fiber-based cavity with an inserted diamond membrane containing ensembles of silicon va...
Colloidal semiconductor nanoplatelets exhibit quantum size effects due to their thickness of only a ...
The emergent field of cavity quantum materials bridges collective many-body phenomena in solid state...