Fetching the paper…
Reading the bibliography…
We present an extensive introduction to quantum collision models (CMs), also known as repeated interactions schemes: a class of microscopic system-bath models for investigating open quantum systems dynamics whose use is currently spreading in a number of research areas.
“On the exponential solution of differential equations for a linear operator”
Wilhelm Magnus · 1954
Earlier work this paper cites.
“Irreversibility and heat generation in the computing process”
R. Landauer · 1961
Earlier work this paper cites.
“Relaxation phenomena in spin and harmonic oscillator systems”
Jayaseetha Rau · 1963
Earlier work this paper cites.
In Statistical physics: theory of the condensed state, Vol. 9 , 1980
Lev Landau, Evgenijč Lifšic, Evgenii Lifshitz and LP Pitaevskii · 1980
Earlier work this paper cites.
“Quantum mechanics of measurements distributed in time. A path-integral formulation”
Carlton. Caves · 1986
Earlier work this paper cites.
“Theory of a microscopic maser”
P. Filipowicz, J. Javanainen and P. Meystre · 1986
Earlier work this paper cites.
“Quantum and semiclassical steady states of a kicked cavity mode”
P Filipowicz, J Javanainen and Pierre Meystre · 1986
Earlier work this paper cites.
“The microscopic maser”
P Filipowicz, J Javanainen and Pierre Meystre · 1986
Earlier work this paper cites.
“Quantum mechanics of measurements distributed in time. II”, 1987
Carlton. Caves · 1987
Earlier work this paper cites.
“Quantum-mechanical model for continuous position measurements”
Carlton. Caves and G.. Milburn · 1987
Earlier work this paper cites.
“Role of pumping statistics in maser and laser dynamics: Density-matrix approach”
J. Bergou et al · 1989
Earlier work this paper cites.
“Quantum-field model of the injected atomic beam in the micromaser”
J.. Cresser · 1992
Earlier work this paper cites.
“Quantum trajectory theory for cascaded open systems”
H.. Carmichael · 1993
Earlier work this paper cites.
“Driving a quantum system with the output field from another driven quantum system”
C.. Gardiner · 1993
Earlier work this paper cites.
“Monte-Carlo wave-function method in quantum optics”
Klaus Mølmer, Yvan Castin and Jean Dalibard · 1993
Earlier work this paper cites.
“One-atom maser: Statistics of detector clicks”
Hans-Jürgen Briegel, Berthold-Georg Englert, Nicoletta Sterpi and Herbert Walther · 1994
Earlier work this paper cites.
“Macroscopic dynamics of a maser with non-Poissonian injection statistics”
Hans-Jürgen Briegel and Berthold-Georg Englert · 1995
Earlier work this paper cites.
“Phase-sensitive reservoir modeled by beam splitters”
Myung Kim and Nobuyuki Imoto · 1995
Earlier work this paper cites.
“The quantum-jump approach to dissipative dynamics in quantum optics”
M.. Plenio and P.. Knight · 1998
Earlier work this paper cites.
“Lecture notes for physics 229: Quantum information and computation”
John Preskill · 1998
Earlier work this paper cites.
In The Quantum Theory Of Light , 2000
Rodney Loudon · 2000
Earlier work this paper cites.
“Diluting quantum information: An analysis of information transfer in system-reservoir interactions”
M. Ziman et al · 2002
Earlier work this paper cites.
“Thermalizing Quantum Machines: Dissipation and Entanglement”
Valerio Scarani et al · 2002
Earlier work this paper cites.
“A simple model of quantum trajectories”
Todd. Brun · 2002
Earlier work this paper cites.
“Five lectures on dissipative master equations”
Berthold-Georg Englert and Giovanna Morigi · 2002
Earlier work this paper cites.
“Laser-driven atoms in half-cavities”
U. Dorner and P. Zoller · 2002
Earlier work this paper cites.
“Quantum technology: the second quantum revolution”
A… MacFarlane, Jonathan. Dowling and Gerard. Milburn · 2003
Earlier work this paper cites.
“Extracting work from a single heat bath via vanishing quantum coherence”
Marlan Scully, M Zubairy, Girish Agarwal and Herbert Walther · 2003
Earlier work this paper cites.
“Saturation of Coffman - Kundu - Wootters inequalities via quantum homogenization”
Mário Ziman, Peter Stelmachovic and Vladimír Buzek · 2003
Earlier work this paper cites.
“Quantum noise : a handbook of Markovian and non-Markovian quantum stochastic methods with applications to quantum optics / C.W. Gardiner, P. Zoller.”
C.. Gardiner and P. Zoller · 2004
Earlier work this paper cites.
“Input and output in damped quantum systems III: Formulation of damped systems driven by Fermion fields”
CW Gardiner · 2004
Earlier work this paper cites.
“Quantum channels with memory”
Dennis Kretschmann and Reinhard. Werner · 2005
Earlier work this paper cites.
“Description of quantum dynamics of open systems based on collision-like models”
Mário Ziman, Peter Štelmachovič and Vladimír Bužek · 2005
Earlier work this paper cites.
“All (qubit) decoherences: Complete characterization and physical implementation”
Mário Ziman and Vladimír Bužek · 2005
Earlier work this paper cites.
“Exploring the quantum : atoms, cavities and photons / Serge Haroche, Jean-Michel Raimond.”
J.M Raimond, S Haroche and J.-M Raimond · 2006
Earlier work this paper cites.
“On the exact identity between thermodynamic and informatic entropies in a unitary model of friction”
Lajos Diósi, Tova Feldmann and Ronnie Kosloff · 2006
Earlier work this paper cites.
“Quantum-classical transition of photon-carnot engine induced by quantum decoherence”
H.. Quan, P. Zhang and C.. Sun · 2006
Earlier work this paper cites.
“The Theory of Open Quantum Systems”
Heinz-Peter Breuer and Francesco Petruccione · 2007
Earlier work this paper cites.
“Mediated homogenization”
Daniel Burgarth and Vittorio Giovannetti · 2007
Earlier work this paper cites.
In Elements Of Quantum Optics , 2007
Pierre Meystre and Murray Sargent · 2007
Earlier work this paper cites.
“Entanglement and irreversibility in the approach to thermal equilibrium”
V. Scarani · 2007
Earlier work this paper cites.
“Boltzmann’s H-theorem, its limitations, and the birth of (fully) statistical mechanics”, 2008
Harvey Brown and Wayne Myrvold · 2008
Earlier work this paper cites.
“The theory of non-Markovian open quantum systems”
Cesar Rodriguez · 2008
Earlier work this paper cites.
“Relaxation phenomena in a system of two harmonic oscillators”
Antonia Chimonidou and E… Sudarshan · 2008
Earlier work this paper cites.
“Dividing quantum channels”
Michael Wolf and J Cirac · 2008
Earlier work this paper cites.
“Entanglement dynamics and relaxation in a few-qubit system interacting with random collisions”
G. Gennaro, G. Benenti and G.. Palma · 2008
Earlier work this paper cites.
“Quantum Measurement and Control”
Howard Wiseman and Gerard Milburn · 2009
Earlier work this paper cites.
“Relaxation due to random collisions with a many-qudit environment”
Giuseppe Gennaro, Giuliano Benenti and G. Palma · 2009
Earlier work this paper cites.
In An Open Systems Approach to Quantum Optics: Lectures Presented At The UniversitÉ Libre De Bruxelles, October 28 To November 4, 1991, Vol. 18 , 2009
Howard Carmichael · 2009
Earlier work this paper cites.
“Quantum nonequilibrium steady states induced by repeated interactions”
Dragi Karevski and Thierry Platini · 2009
Earlier work this paper cites.
“Energetics of quantum correlations”
R. Dillenschneider and E. Lutz · 2009
Earlier work this paper cites.
“Non-Markovian quantum repeated interactions and measurements”
C Pellegrini and F Petruccione · 2009
Earlier work this paper cites.
“Structural change in multipartite entanglement sharing: A random matrix approach”
G. Gennaro, S. Campbell, M. Paternostro and G.. Palma · 2009
Earlier work this paper cites.
“Quantum computation and quantum information Michael A. Nielsen & Isaac L. Chuang.”
Michael. Nielsen and Isaac. Chuang · 2010
Earlier work this paper cites.
“Open system dynamics of simple collision models”
M. Ziman and V. Bu?ek · 2010
Earlier work this paper cites.
“Entanglement and non-Markovianity of quantum evolutions”
Ángel Rivas, Susana. Huelga and Martin. Plenio · 2010
Earlier work this paper cites.
“Entropy production as correlation between system and reservoir”
Massimiliano Esposito, Katja Lindenberg and Christian den Broeck · 2010
Earlier work this paper cites.
“Open Quantum Systems An Introduction / by Ángel Rivas, Susana F. Huelga.”
Ángel Rivas and Susana Huelga · 2012
Earlier work this paper cites.
“Positivity in the presence of initial system-environment correlation”
Kavan Modi, César. Rodríguez-Rosario and Alán Aspuru-Guzik · 2012
Earlier work this paper cites.
“Foundations and measures of quantum non-Markovianity”
Heinz-Peter Breuer · 2012
Earlier work this paper cites.
“Simulation of indivisible qubit channels in collision models”
Tomáš Rybár, Sergey. Filippov, Mário Ziman and Vladimír Bužek · 2012
Earlier work this paper cites.
“Master equations for correlated quantum channels”
V. Giovannetti and G.. Palma · 2012
Earlier work this paper cites.
“Master equation for cascade quantum channels: a collisional approach”
V. Giovannetti and G.. Palma · 2012
Earlier work this paper cites.
“Decoherence and the conditions for the classical control of quantum systems”
GJ Milburn · 2012
Earlier work this paper cites.
“Quantum-trajectory approach to the stochastic thermodynamics of a forced harmonic oscillator”
Jordan. Horowitz · 2012
Earlier work this paper cites.
“The classical-quantum boundary for correlations: Discord and related measures”
Kavan Modi et al · 2012
Earlier work this paper cites.
“Quantum Thermodynamics: A Dynamical Viewpoint”
Ronnie Kosloff · 2013
Earlier work this paper cites.
“Collision-model-based approach to non-Markovian quantum dynamics”
F. Ciccarello, G.. Palma and V. Giovannetti · 2013
Earlier work this paper cites.
“Ergodic and mixing quantum channels in finite dimensions”
D. Burgarth et al · 2013
Earlier work this paper cites.
“A noise inequality for classical forces”, 2013
Dvir Kafri and JM Taylor · 2013
Earlier work this paper cites.
“Entropy production along nonequilibrium quantum jump trajectories”
Jordan Horowitz and Juan Parrondo · 2013
Earlier work this paper cites.
“A quantum non-Markovian collision model: incoherent swap case”
F. Ciccarello and V. Giovannetti · 2013
Earlier work this paper cites.
“Non-Markovian master equations from piecewise dynamics”
Bassano Vacchini · 2013
Earlier work this paper cites.
“Structural features of non-Markovian open quantum systems using quantum chains”
András Bodor, Lajos Diósi, Zsófia Kallus and Thomas Konrad · 2013
Earlier work this paper cites.
“Dynamics of spontaneous emission in a single-end photonic waveguide”
Tommaso Tufarelli, Francesco Ciccarello and M.. Kim · 2013
Earlier work this paper cites.
“Quantum Measurement Theory and its Applications”
Kurt Jacobs · 2014
Earlier work this paper cites.
“Repeated interactions in open quantum systems”
Laurent Bruneau, Alain Joye and Marco Merkli · 2014
Earlier work this paper cites.
“A practical introduction to tensor networks: Matrix product states and projected entangled pair states”
Román Orús · 2014
Earlier work this paper cites.
“Quantum channels and memory effects”
Filippo Caruso, Vittorio Giovannetti, Cosmo Lupo and Stefano Mancini · 2014
Earlier work this paper cites.
“Quantum non-Markovianity: characterization, quantification and detection”
Ángel Rivas, Susana. Huelga and Martin. Plenio · 2014
Earlier work this paper cites.
“A classical channel model for gravitational decoherence”
D Kafri, JM Taylor and GJ Milburn · 2014
Earlier work this paper cites.
“Flux rectification in the quantum XXZ chain”
Gabriel. Landi, E. Novais, Mário. de Oliveira and Dragi Karevski · 2014
Cited alongside, same era.
“The local approach to quantum transport may violate the second law of thermodynamics”
Amikam Levy and Ronnie Kosloff · 2014
Cited alongside, same era.
“Quantum coherence rather than quantum correlations reflect the effects of a reservoir on a system’s work capability”
Hai Li et al · 2014
Cited alongside, same era.
“The multilevel four-stroke swap engine and its environment”
Raam Uzdin and Ronnie Kosloff · 2014
Cited alongside, same era.
“An improved Landauer principle with finite-size corrections”
David Reeb and Michael Wolf · 2014
Cited alongside, same era.
“Non-Markovianity and system-environment correlations in a microscopic collision model”
Ruari McCloskey and Mauro Paternostro · 2014
“Steering heat engines: A truly quantum maxwell demon”
Konstantin Beyer, Kimmo Luoma and Walter. Strunz · 2019
Later among the works it cites.
“Autonomous thermal machine for amplification and control of energetic coherence”
Gonzalo Manzano, Ralph Silva and Juan.. Parrondo · 2019
Later among the works it cites.
“Dissipative charging of a quantum battery”
Felipe Barra · 2019
Later among the works it cites.
“Imperfect thermalizations allow for optimal thermodynamic processes”
Elisa Bäumer et al · 2019
Later among the works it cites.
“Thermodynamics of weakly coherent collisional models”
Franklin.. Rodrigues, Gabriele De, Mauro Paternostro and Gabriel. Landi · 2019
Later among the works it cites.
“Operational approach to quantum stochastic thermodynamics”
Philipp Strasberg · 2019
Later among the works it cites.
alphaXiv searches the wider corpus for related work and actual follow-ups.
alphaXiv is searching for related work…
Cited alongside, same era.
“General structure of quantum collisional models”
Bassano Vacchini · 2014
Cited alongside, same era.
“Environmental correlations and Markovian to non-Markovian transitions in collisional models”
N.. Bernardes, A… Carvalho, C.. Monken and M.. Santos · 2014
Cited alongside, same era.
“Autonomous quantum thermal machine for generating steady-state entanglement”
Jonatan Brask, Géraldine Haack, Nicolas Brunner and Marcus Huber · 2015
Cited alongside, same era.
“Manipulating quantum information with spin torque”
Brian Sutton and Supriyo Datta · 2015
Cited alongside, same era.
“The thermodynamic cost of driving quantum systems by their boundaries”
Felipe Barra · 2015
Cited alongside, same era.
“Superradiant quantum heat engine”
AliÜC Hardal and Özgür Müstecaplioğlu · 2015
Cited alongside, same era.
“Repeated interactions and quantum stochastic thermodynamics at strong coupling”
Philipp Strasberg · 2019
Later among the works it cites.
“Time-reversed quantum trajectory analysis of micromaser correlation properties and fluctuation relations”
J Cresser · 2019
Later among the works it cites.
“Precursors of non-Markovianity”
Steve Campbell, Maria Popovic, Dario Tamascelli and Bassano Vacchini · 2019
Later among the works it cites.
“Validity of the Landauer principle and quantum memory effects via collisional models”
Zhong-Xiao Man, Yun-Jie Xia and Rosario Franco · 2019
Later among the works it cites.
“An out-of-equilibrium non-Markovian quantum heat engine”
Marco Pezzutto, Mauro Paternostro and Yasser Omar · 2019
Later among the works it cites.
“All-optical implementation of collision-based evolutions of open quantum systems”
Álvaro Cuevas et al · 2019
Later among the works it cites.
“Non-Markovian open dynamics from collision models”
Vijay Pathak and Anil Shaji · 2019
Later among the works it cites.
“Completely positive divisibility does not mean Markovianity”
Simon Milz, M.. Kim, Felix. Pollock and Kavan Modi · 2019
Later among the works it cites.
“Structure of quantum stochastic processes with finite Markov order”
Philip Taranto, Simon Milz, Felix. Pollock and Kavan Modi · 2019
Later among the works it cites.
“Quantum non-Markovian collision models from colored-noise baths”
Dario Cilluffo and Francesco Ciccarello · 2019
Later among the works it cites.
“Collision model for non-Markovian quantum trajectories”
S.. Whalen · 2019
Later among the works it cites.
“Remote Hamiltonian interactions mediated by light”
Thomas Karg, Baptiste Gouraud, Philipp Treutlein and Klemens Hammerer · 2019
Later among the works it cites.
“Implementing quantum stochastic differential equations on a quantum computer”
Gé Vissers and Luc Bouten · 2019
Later among the works it cites.
“Quantum algorithm for simulating an experiment: Light interference from single ions and their mirror images”
Luc Bouten, Gé Vissers and Ferdinand Schmidt-Kaler · 2019
Later among the works it cites.
“Quantum trajectories for a system interacting with environment in N-photon state”
Anita Dabrowska, Gniewomir Sarbicki and Dariusz Chruściński · 2019
Later among the works it cites.
“Quantum trajectories for environment in superposition of coherent states”
Anita Dabrowska · 2019
Later among the works it cites.
“Collisional unfolding of quantum Darwinism”
Steve Campbell et al · 2019
Later among the works it cites.
“Reading a qubit quantum state with a quantum meter: time unfolding of quantum Darwinism and quantum information flux”
Salvatore Lorenzo, Mauro Paternostro and G Palma · 2019
Later among the works it cites.
“A steady state quantum classifier”
Deniz Türkpençe, TahirÇetin Akinci and Serhat Şeker · 2019
Later among the works it cites.
“Zeno friction and antifriction from quantum collision models”
Daniel Grimmer, Achim Kempf, Robert. Mann and Eduardo Martín-Martínez · 2019
Later among the works it cites.
“Interpolated collision model formalism”, 2020
Daniel Grimmer · 2020
Later among the works it cites.
“Irreversible entropy production, from quantum to classical”, 2020
Gabriel Landi and Mauro Paternostro · 2020
Later among the works it cites.
“Quantum master equations for a system interacting with a quantum gas in the low-density limit and for the semiclassical collision model”
S.. Filippov, G.. Semin and A.. Pechen · 2020
Later among the works it cites.
“Microscopic biasing of discrete-time quantum trajectories”, 2020
Dario Cilluffo et al · 2020
Later among the works it cites.
“Surpassing the thermal Cramér-Rao bound with collisional thermometry”
Angeline Shu, Stella Seah and Valerio Scarani · 2020
Later among the works it cites.
“Quantum memory enhanced dissipative entanglement creation in non-equilibrium steady states”, 2020
Daniel Heineken, Konstantin Beyer, Kimmo Luoma and Walter Strunz · 2020
Later among the works it cites.
“Quantum machines powered by correlated baths”
Gabriele De and Mauro Antezza · 2020
Later among the works it cites.
“Three-qubit refrigerator with two-body interactions”
Adam Hewgill et al · 2020
Later among the works it cites.
“Stroboscopic two-stroke quantum heat engines”
Otavio.. Molitor and Gabriel. Landi · 2020
Later among the works it cites.
“Non-abelian quantum transport and thermosqueezing effects”, 2020
Gonzalo Manzano, Juan Parrondo and Gabriel Landi · 2020
Later among the works it cites.
“Non-equilibrium steady-states of memoryless quantum collision models”
Giacomo Guarnieri et al · 2020
Later among the works it cites.
“Enhanced steady-state coherences via repeated system-bath interactions”, 2020
Ricardo Román-Ancheyta, Michal Kolář, Giacomo Guarnieri and Radim Filip · 2020
Later among the works it cites.
“Work as an external quantum observable and an operational quantum work fluctuation theorem”
Konstantin Beyer, Kimmo Luoma and Walter. Strunz · 2020
Later among the works it cites.
“Implications of non-Markovian dynamics on information-driven engine”
Obinna Abah and Mauro Paternostro · 2020
Later among the works it cites.
“Quantum renewal processes”
Bassano Vacchini · 2020
Later among the works it cites.
“IBM Q experience as a versatile experimental testbed for simulating open quantum systems”
Guillermo García-Pérez, Matteo Rossi and Sabrina Maniscalco · 2020
Later among the works it cites.
“Exponential improvement for quantum cooling through finite memory effects”, 2020
Philip Taranto, Faraj Bakhshinezhad, Philipp Schüttelkopf and Marcus Huber · 2020
Later among the works it cites.
“Collisional picture of quantum optics with giant emitters”
Dario Cilluffo et al · 2020
Later among the works it cites.
“Machine learning non-Markovian quantum dynamics”
I.. Luchnikov, S.. Vintskevich, D.. Grigoriev and S.. Filippov · 2020
Later among the works it cites.
“Mechanism of decoherence-free coupling between giant atoms”
Angelo Carollo, Dario Cilluffo and Francesco Ciccarello · 2020
Later among the works it cites.
“Waveguide quantum electrodynamics with superconducting artificial giant atoms”
Bharath Kannan et al · 2020
Later among the works it cites.
“Photon-photon interactions in dynamically coupled cavities”
Mikkel Heuck, Kurt Jacobs and Dirk. Englund · 2020
Later among the works it cites.
“Controlled-phase gate using dynamically coupled cavities and optical nonlinearities”
Mikkel Heuck, Kurt Jacobs and Dirk. Englund · 2020
Later among the works it cites.
“Stabilization of finite-energy Gottesman-Kitaev-Preskill States”
Baptiste Royer, Shraddha Singh and S.. Girvin · 2020
Later among the works it cites.
“From a posteriori to a priori solutions for a two-level system interacting with a single-photon wavepacket”
Anita Dabrowska · 2020
Later among the works it cites.
“Decoherence without entanglement and quantum Darwinism”
Guillermo García-Pérez et al · 2020
Later among the works it cites.
“Anti-Zeno-based dynamical control of the unfolding of quantum Darwinism”
Salvatore Lorenzo, Mauro Paternostro and G. Palma · 2020
Later among the works it cites.
“Basis-independent system-environment coherence is necessary to detect magnetic field direction in an avian-inspired quantum magnetic sensor”, 2020
Thao Le and Alexandra Olaya-Castro · 2020
Later among the works it cites.
“Information scrambling in a collision model”
Yan Li, Xingli Li and Jiasen Jin · 2020
Later among the works it cites.
“Collision models in open system dynamics: A versatile tool for deeper insights?”, 2021
Steve Campbell and Bassano Vacchini · 2021
Closest in time.
“Modeling quantum light-matter interactions in waveguide QED with retardation, nonlinear interactions, and a time-delayed feedback: Matrix product states versus a space-discretized waveguide model”
Sofia Arranz, Gavin Crowder, Howard Carmichael and Stephen Hughes · 2021
Closest in time.
“Stochastic collisional quantum thermometry”
Eoin O’Connor, Bassano Vacchini and Steve Campbell · 2021
Closest in time.
“Quantum Rayleigh problem and thermocoherent onsager relations”
Onur Pusuluk and Özgür. Müstecaplogğlu · 2021
Closest in time.
“Power maximization of two-stroke quantum thermal machines”
Nicolò Piccione, Gabriele De and Bruno Bellomo · 2021
Closest in time.
“Work fluctuations due to partial thermalizations in two-level systems”
Maria Quadeer, Kamil Korzekwa and Marco Tomamichel · 2021
Closest in time.
“Optimizing autonomous thermal machines powered by energetic coherence”
Kenza Hammam, Yassine Hassouni, Rosario Fazio and Gonzalo Manzano · 2021
Closest in time.
“Quantum thermodynamics under continuous monitoring: a general framework”, 2021
Gonzalo Manzano and Roberta Zambrini · 2021
Closest in time.
“Informational steady-states and conditional entropy production in continuously monitored systems”, 2021
Gabriel Landi, Mauro Paternostro and Alessio Belenchia · 2021
Closest in time.
“Non-Markovianity and the Landauer principle in composite thermal environments”
Qi Zhang, Zhong-Xiao Man and Yun-Jie Xia · 2021
Closest in time.
“Memory kernel and divisibility of Gaussian collisional models”
Rolando Camasca and Gabriel. Landi · 2021
Closest in time.
“Quantum optics with giant atoms—the first five years”
Anton Kockum · 2021
Closest in time.
“Synchronization and non-Markovianity in open quantum systems”
Göktugğ Karpat et al · 2021
Closest in time.
“Collision models can efficiently simulate any multipartite Markovian quantum dynamics”
Marco Cattaneo et al · 2021
Closest in time.
“Probing nonclassical light fields with energetic witnesses in waveguide quantum electrodynamics”
Maria Maffei, Patrice. Camati and Alexia Auffèves · 2021
Closest in time.
“Quantum darwinism in a composite system: Objectivity versus classicality”
Bariş Çakmak et al · 2021
Closest in time.
“Stochastic collision model approach to transport phenomena in quantum networks”
Dario Chisholm et al · 2021
Closest in time.
“The Unruh Effect in Slow Motion”
Silas Vriend, Daniel Grimmer and Eduardo Martín-Martínez · 2021
Closest in time.
“Battery charging in collision models with Bayesian risk strategies”
Gabriel Landi · 2021
Closest in time.
“Quantum Metrology for Non-Markovian Processes”
Anian Altherr and Yuxiang Yang · 2021
Closest in time.
“Periodically refreshed baths to simulate open quantum many-body dynamics”
Archak Purkayastha et al · 2021
Closest in time.
“Quantum homogenization in non-Markovian collisional model”
Tanmay Saha, Arpan Das and Sibasish Ghosh · 2022
Closest in time.
“Quantum Thermodynamics”, 2053-2571
Sebastian Deffner and Steve Campbell · 2053
Closest in time.
“Qubit models of weak continuous measurements: markovian conditional and open-system dynamics”
Jonathan. Gross, Carlton. Caves, Gerard. Milburn and Joshua Combes · 2058
Closest in time.
“Spectral signatures of non-thermal baths in quantum thermalization”
Ricardo Román-Ancheyta, Bariş Çakmak and Özgür Müstecaplioğlu · 2058
Closest in time.