Universality is a fundamental concept in physics that allows for the description of properties of systems that are independent of microscopic details. In this work, we show that polaritons in a Bose-Einstein condensate (BEC) are a suitable platform to probe in a non-demolition way the universal high-energy spectrum of an impurity strongly coupled to a BEC. Based on a field theory that includes the two-body correlations at the exact level we demonstrate that under appropriate conditions, the damping rate of slow-light propagation reveals the high-energy universal tail in the polaron spectrum.Comment: 4.5 + 2 pages, To be published in Physical Review A as a Lette
We consider the ground-state properties of an impurity particle ("polaron") resonantly interacting w...
Mobile impurity atoms immersed in Bose–Einstein condensates provide a new platform for exploring Bos...
Bose-Fermi systems such as mixtures of electrons with excitons or exciton-polaritons are extensively...
The mobile impurity in a Bose-Einstein condensate (BEC) is a paradigmatic many-body problem. For wea...
Recently, two independent experiments reported the observation of long-lived polarons in a Bose-Eins...
We develop the many-body theory of dipolar exciton-polaritons in an optical microcavity in crossed t...
We investigate the many-body behavior of polaritons formed from electron-hole pairs strongly coupled...
Spectroscopic and interferometric measurements complement each other in extracting the fundamental p...
We study the impact of induced correlations and quasiparticle properties by immersing two distinguis...
The classic Bogoliubov theory of weakly interacting Bose gases rests upon the assumption that nearly...
An impurity in a Bose gas is commonly referred to as Bose polaron. For a dilute Bose gas its propert...
We discuss the dynamics of the formation of a Bose polaron when an impurity is injected into a weakl...
Impurities immersed into a surrounding ultra-cold Bose gas experience interactions mediated by the s...
We report a comprehensive study of the ground-state properties of one and two bosonic impurities imm...
Funding: UK EPSRC program “Hybrid Polaritonics” (EP/M025330/1) (JK).We theoretically investigate the...
We consider the ground-state properties of an impurity particle ("polaron") resonantly interacting w...
Mobile impurity atoms immersed in Bose–Einstein condensates provide a new platform for exploring Bos...
Bose-Fermi systems such as mixtures of electrons with excitons or exciton-polaritons are extensively...
The mobile impurity in a Bose-Einstein condensate (BEC) is a paradigmatic many-body problem. For wea...
Recently, two independent experiments reported the observation of long-lived polarons in a Bose-Eins...
We develop the many-body theory of dipolar exciton-polaritons in an optical microcavity in crossed t...
We investigate the many-body behavior of polaritons formed from electron-hole pairs strongly coupled...
Spectroscopic and interferometric measurements complement each other in extracting the fundamental p...
We study the impact of induced correlations and quasiparticle properties by immersing two distinguis...
The classic Bogoliubov theory of weakly interacting Bose gases rests upon the assumption that nearly...
An impurity in a Bose gas is commonly referred to as Bose polaron. For a dilute Bose gas its propert...
We discuss the dynamics of the formation of a Bose polaron when an impurity is injected into a weakl...
Impurities immersed into a surrounding ultra-cold Bose gas experience interactions mediated by the s...
We report a comprehensive study of the ground-state properties of one and two bosonic impurities imm...
Funding: UK EPSRC program “Hybrid Polaritonics” (EP/M025330/1) (JK).We theoretically investigate the...
We consider the ground-state properties of an impurity particle ("polaron") resonantly interacting w...
Mobile impurity atoms immersed in Bose–Einstein condensates provide a new platform for exploring Bos...
Bose-Fermi systems such as mixtures of electrons with excitons or exciton-polaritons are extensively...