Recent experimental advances enable the manipulation of quantum matter by exploiting the quantum nature of light. However, paradigmatic exactly solvable models, such as the Dicke, Rabi or Jaynes-Cummings models for quantum-optical systems, are scarce in the corresponding solid-state, quantum materials context. Focusing on the long-wavelength limit for the light, here, we provide such an exactly solvable model given by a tight-binding chain coupled to a single cavity mode via a quantized version of the Peierls substitution. We show that perturbative expansions in the light-matter coupling have to be taken with care and can easily lead to a false superradiant phase. Furthermore, we provide an analytical expression for the groundstate in the t...
The introduction of an optical resonator can enable efficient and precise interaction between a phot...
This thesis concerns possible implementations of quantum computing schemes and tries to overcome som...
Quantum systems can be dynamically controlled using time-periodic external fields, leading to the co...
Recent experimental advances enable the manipulation of quantum matter by exploiting the quantum nat...
Cavity modification of material properties and phenomena is a novel research field largely motivated...
The striking nonlinear effects exhibited by cavity QED systems make them a powerful tool in modern c...
The hybridization between light and matter forms the basis to achieve cavity control over quantum ma...
Floquet engineering is a versatile tool that uses periodic driving of a quantum system to build nove...
Controlling the topological properties of quantum matter is a major goal of condensed matter physics...
Floquet engineering, the control of quantum systems using periodic driving, is an old concept in con...
In this article, we review strong light-matter coupling at the interface of materials science, quant...
In recent years tremendous progress in the field of lightmatter interactions has unveiled that stron...
International audienceIn cavity quantum electrodynamics (QED), the interaction between an atomic tra...
The first exact quantum simulation of a real molecular system (HD+) under strong ro-vibrational coup...
In spite of decades of work it has remained unclear whether or not superradiant quantum phases, refe...
The introduction of an optical resonator can enable efficient and precise interaction between a phot...
This thesis concerns possible implementations of quantum computing schemes and tries to overcome som...
Quantum systems can be dynamically controlled using time-periodic external fields, leading to the co...
Recent experimental advances enable the manipulation of quantum matter by exploiting the quantum nat...
Cavity modification of material properties and phenomena is a novel research field largely motivated...
The striking nonlinear effects exhibited by cavity QED systems make them a powerful tool in modern c...
The hybridization between light and matter forms the basis to achieve cavity control over quantum ma...
Floquet engineering is a versatile tool that uses periodic driving of a quantum system to build nove...
Controlling the topological properties of quantum matter is a major goal of condensed matter physics...
Floquet engineering, the control of quantum systems using periodic driving, is an old concept in con...
In this article, we review strong light-matter coupling at the interface of materials science, quant...
In recent years tremendous progress in the field of lightmatter interactions has unveiled that stron...
International audienceIn cavity quantum electrodynamics (QED), the interaction between an atomic tra...
The first exact quantum simulation of a real molecular system (HD+) under strong ro-vibrational coup...
In spite of decades of work it has remained unclear whether or not superradiant quantum phases, refe...
The introduction of an optical resonator can enable efficient and precise interaction between a phot...
This thesis concerns possible implementations of quantum computing schemes and tries to overcome som...
Quantum systems can be dynamically controlled using time-periodic external fields, leading to the co...