A two-level system resonantly interacting with an a.c. magnetic or electric field constitutes the physical basis of diverse phenomena and technologies. However, Schrödinger’s equation for this seemingly simple system can be solved exactly only under the rotating-wave approximation, which neglects the counter-rotating field component. When the a.c. field is sufficiently strong, this approximation fails, leading to a resonance-frequency shift known as the Bloch–Siegert shift. Here, we report the vacuum Bloch–Siegert shift, which is induced by the ultra-strong coupling of matter with the counter-rotating component of the vacuum fluctuation field in a cavity. Specifically, an ultra-high-mobility two-dimensional electron gas inside a high-Qterah...
In a microcavity, light-matter coupling is quantified by the vacuum-Rabi frequency ?R. When ?R is la...
International audienceWe develop a theory of cavity quantum electrodynamics for a two-dimensional el...
In a previous work [Phys. Rev. Lett. 123, 047202 (2019)] a translationally invariant framework calle...
In a two-dimensional electron gas (2DEG) inside a terahertz (THz) cavity in a perpendicular magnetic...
Quantum electrodynamics predicts a non-trivial ground state for an electromagnetic mode. In the abse...
We measure the dispersive energy-level shift of an LC resonator magnetically coupled to a supercondu...
We show that strong electron-electron interactions in quantum materials can give rise to electronic ...
Atomically strong light pulses can drive sub-optical-cycle dynamics. When the Rabi frequency-the rat...
International audienceWe probe ultra-strong light matter coupling between metallic terahertz metasur...
Makihara T, Hayashida K, Noe Ii GT, et al. Ultrastrong magnon-magnon coupling dominated by antireson...
Two-dimensional semiconductors inside optical microcavities have emerged as a versatile platform to ...
We investigate the two-dimensional motion of relativistic cold electrons in the presence of ‘strictl...
Two-dimensional semiconductors inside optical microcavities have emerged as a versatile platform to ...
We propose a solution to the problem of Bloch electrons in a homogeneous magnetic field by including...
Final version accepted in PRBWe present a quantum description of a planar microcavity photon mode st...
In a microcavity, light-matter coupling is quantified by the vacuum-Rabi frequency ?R. When ?R is la...
International audienceWe develop a theory of cavity quantum electrodynamics for a two-dimensional el...
In a previous work [Phys. Rev. Lett. 123, 047202 (2019)] a translationally invariant framework calle...
In a two-dimensional electron gas (2DEG) inside a terahertz (THz) cavity in a perpendicular magnetic...
Quantum electrodynamics predicts a non-trivial ground state for an electromagnetic mode. In the abse...
We measure the dispersive energy-level shift of an LC resonator magnetically coupled to a supercondu...
We show that strong electron-electron interactions in quantum materials can give rise to electronic ...
Atomically strong light pulses can drive sub-optical-cycle dynamics. When the Rabi frequency-the rat...
International audienceWe probe ultra-strong light matter coupling between metallic terahertz metasur...
Makihara T, Hayashida K, Noe Ii GT, et al. Ultrastrong magnon-magnon coupling dominated by antireson...
Two-dimensional semiconductors inside optical microcavities have emerged as a versatile platform to ...
We investigate the two-dimensional motion of relativistic cold electrons in the presence of ‘strictl...
Two-dimensional semiconductors inside optical microcavities have emerged as a versatile platform to ...
We propose a solution to the problem of Bloch electrons in a homogeneous magnetic field by including...
Final version accepted in PRBWe present a quantum description of a planar microcavity photon mode st...
In a microcavity, light-matter coupling is quantified by the vacuum-Rabi frequency ?R. When ?R is la...
International audienceWe develop a theory of cavity quantum electrodynamics for a two-dimensional el...
In a previous work [Phys. Rev. Lett. 123, 047202 (2019)] a translationally invariant framework calle...