Dissipative Kondo physics in the Anderson Impurity Model with two-body losses
- URL: http://arxiv.org/abs/2506.22302v1
- Date: Fri, 27 Jun 2025 15:13:44 GMT
- Title: Dissipative Kondo physics in the Anderson Impurity Model with two-body losses
- Authors: Matthieu Vanhoecke, Naoto Tsuji, Marco SchirĂ²,
- Abstract summary: We study a dissipative version of the Anderson Impurity model, where an interacting impurity is exposed to Markovian dissipation.<n>We show that the interplay between strong Coulomb repulsion and correlated dissipation gives rise to robust signatures of Kondo physics.
- Score: 0.0
- License: http://creativecommons.org/licenses/by/4.0/
- Abstract: We study a dissipative version of the Anderson Impurity model, where an interacting impurity is coupled to a fermionic reservoir and exposed to Markovian dissipation in the form of two-body losses. Using a self-consistent hybridization expansion based on the Non-Crossing Approximation (NCA) we compute the dynamics of the impurity, its steady-state and spectral function. We show that the interplay between strong Coulomb repulsion and correlated dissipation gives rise to robust signatures of Kondo physics both at weak and strong losses. These include a strongly suppressed spin relaxation rate, displaying a characteristic Kondo-Zeno crossover and a spectral function where doublon band is quickly destroyed by dissipation while the coherent Kondo peak remains visible for weak losses, then disappears at intermediate values and finally re-emerge as the system enters in the Kondo-Zeno regime. As compared to the case of single particle losses we show that two-body dissipation protects Kondo physics. The picture obtained with NCA is confirmed by numerical simulations of exact dynamics on finite-size chains. We interpret these results using a dissipative Schrieffer-Wolff transformation, which leads to an effective Kondo model with residual impurity-bath losses which are suppressed by strong correlations or strong losses.
Related papers
- Dynamics of the Bose-Hubbard Model Induced by On-Site or Long-Range Two-Body Losses [0.0]
We study the dynamics induced by the sudden switch-on of two-body losses on a weakly-interacting superfluid state.<n>We find that the intermediate-time dynamics of the density displays an interaction-dependent power-law exponent.<n>The latter property still holds for long-range two-body loss processes but it is absent in the two-dimensional square lattice with on-site losses.
arXiv Detail & Related papers (2025-02-13T06:55:03Z) - Flux-pump induced degradation of $T_1$ for dissipative cat qubits [42.110730614476104]
Dissipative stabilization of cat qubits autonomously corrects for bit flip errors by ensuring that reservoir-engineered two-photon losses dominate over other mechanisms inducing phase flip errors.
We analyze the dressing of relaxation processes under drives in time-dependent Schrieffer-Wolff perturbation theory for weakly anharmonic bosonic degrees of freedom.
We find that spurious single-photon decay rates can increase under the action of the parametric pump that generates the required interactions for cat-qubit stabilization.
arXiv Detail & Related papers (2024-10-01T18:02:16Z) - Correlation versus dissipation in a non-Hermitian Anderson impurity model [0.0]
We develop a slave-boson theory for a non-Hermitian Anderson impurity model with one-body loss.<n>We unveil the mechanism of a dissipative quantum phase transition of the Kondo state on the basis of this renormalization effect.
arXiv Detail & Related papers (2024-08-07T01:08:52Z) - Kondo-Zeno crossover in the dynamics of a monitored quantum dot [0.0]
Continuously monitoring a quantum system can strongly affect its properties and even suppress its coherent evolution via the Quantum Zeno effect.<n>Here we focus on one of the simplest entangled many-body state, arising via the Kondo effect in a strongly interacting quantum dot coupled to a metallic bath.<n>We show that the decay rate of an initially polarized spin displays a crossover from Kondo screening, with a decay rate controlled by interactions, to Quantum Zeno effect, with a decay rate which decreases with bare dissipation as the monitoring rate is increased.
arXiv Detail & Related papers (2024-05-27T16:53:42Z) - Exact dynamics of quantum dissipative $XX$ models: Wannier-Stark localization in the fragmented operator space [49.1574468325115]
We find an exceptional point at a critical dissipation strength that separates oscillating and non-oscillating decay.
We also describe a different type of dissipation that leads to a single decay mode in the whole operator subspace.
arXiv Detail & Related papers (2024-05-27T16:11:39Z) - Observation of Nonlinear Response and Onsager Regression in a Photon Bose-Einstein Condensate [34.82692226532414]
The quantum regression theorem states that the correlations of a system at two different times are governed by the same equations of motion as the temporal response of the average values.
Here we experimentally demonstrate that the two-time particle number correlations in a photon Bose-Einstein condensate inside a dye-filled microcavity exhibit the same dynamics as the response of the condensate to a sudden perturbation of the dye molecule bath.
This confirms the regression theorem for a quantum gas and, moreover, establishes a test of this relation in an unconventional form where the perturbation acts on the bath and only the condensate response is monitored.
arXiv Detail & Related papers (2024-03-07T17:59:58Z) - Frequency-resolved Purcell effect for the dissipative generation of
steady-state entanglement [49.1574468325115]
We report a driven-dissipative mechanism to generate stationary entangled $W$ states among strongly-interacting quantum emitters placed within a cavity.
The non-harmonic energy structure of the interacting ensemble allows this transition to be resonantly selected by the cavity.
Evidence of this purely dissipative mechanism should be observable in state-of-the-art cavity QED systems in the solid-state.
arXiv Detail & Related papers (2023-12-19T18:04:22Z) - Expressive Losses for Verified Robustness via Convex Combinations [67.54357965665676]
We study the relationship between the over-approximation coefficient and performance profiles across different expressive losses.
We show that, while expressivity is essential, better approximations of the worst-case loss are not necessarily linked to superior robustness-accuracy trade-offs.
arXiv Detail & Related papers (2023-05-23T12:20:29Z) - Dynamics of polaron formation in 1D Bose gases in the strong-coupling
regime [0.0]
We discuss the dynamics of the formation of a Bose polaron when an impurity is injected into a weakly interacting Bose condensate.
We use Truncated Wigner simulations to show under what conditions the influence of quantum fluctuations is small.
arXiv Detail & Related papers (2023-04-27T19:55:18Z) - Unconditional Wigner-negative mechanical entanglement with
linear-and-quadratic optomechanical interactions [62.997667081978825]
We propose two schemes for generating Wigner-negative entangled states unconditionally in mechanical resonators.
We show analytically that both schemes stabilize a Wigner-negative entangled state that combines the entanglement of a two-mode squeezed vacuum with a cubic nonlinearity.
We then perform extensive numerical simulations to test the robustness of Wigner-negative entanglement attained by approximate CPE states stabilized in the presence of thermal decoherence.
arXiv Detail & Related papers (2023-02-07T19:00:08Z) - Kondo QED: The Kondo effect and photon trapping in a two-impurity
Anderson model ultra-strongly coupled to light [0.43496401697112697]
Kondo effect is one of the most studied examples of strongly correlated quantum many-body physics.
We study a system that combines both phenomena, consisting of a two-impurity Anderson model ultra-strongly coupled to a single-mode cavity.
While presented as an abstract model, it is relevant for a range of future hybrid cavity-QED systems.
arXiv Detail & Related papers (2023-02-02T12:17:15Z) - Simultaneous Transport Evolution for Minimax Equilibria on Measures [48.82838283786807]
Min-max optimization problems arise in several key machine learning setups, including adversarial learning and generative modeling.
In this work we focus instead in finding mixed equilibria, and consider the associated lifted problem in the space of probability measures.
By adding entropic regularization, our main result establishes global convergence towards the global equilibrium.
arXiv Detail & Related papers (2022-02-14T02:23:16Z) - Geometric phase in a dissipative Jaynes-Cummings model: theoretical
explanation for resonance robustness [68.8204255655161]
We compute the geometric phases acquired in both unitary and dissipative Jaynes-Cummings models.
In the dissipative model, the non-unitary effects arise from the outflow of photons through the cavity walls.
We show the geometric phase is robust, exhibiting a vanishing correction under a non-unitary evolution.
arXiv Detail & Related papers (2021-10-27T15:27:54Z) - Noninteracting fermionic systems with localized losses: Exact results in
the hydrodynamic limit [0.0]
We investigate the interplay between unitary dynamics after a quantum quench and localized dissipation in a noninteracting fermionic chain.
In particular, we consider the effect of gain and loss processes, for which fermions are added and removed incoherently.
For strong dissipation the coherent dynamics of the system is arrested, which is a manifestation of the celebrated quantum Zeno effect.
arXiv Detail & Related papers (2021-03-09T19:16:31Z)
This list is automatically generated from the titles and abstracts of the papers in this site.
This site does not guarantee the quality of this site (including all information) and is not responsible for any consequences.