Two-leg ladder Bose Hubbard models with staggered fluxes
Rashi Sachdeva, Friederike Metz, Manpreet Singh, Tapan Mishra, Thomas Busch Phys. Rev. A 98, 06361 (2018).
Universal and optimal coin sequences for high entanglement generation in 1D discrete time quantum walks
A. Gratsea, F. Metz, and Th. Busch J. Phys. A: Math. Theor. 53 44530 (2020).
Deep-learning-based quantum vortex detection in atomic Bose–Einstein condensates
Friederike Metz, Juan Polo, Natalya Weber and Thomas Busch Mach. Learn.: Sci. Technol. 2 035019 (2021)
Variational quantum anomaly detection: Unsupervised mapping of phase diagrams on a physical quantum computer
Korbinian Kottmann, Friederike Metz, Joana Fraxanet, Niccolo Baldelli Phys. Rev. Research 3, 043184 (2021)
Self-Correcting Quantum Many-Body Control using Reinforcement Learning with Tensor Networks
Friederike Metz, Marin Bukov arXiv:2201.11790 (2022)
Non-equilibrium many-body dynamics in supersymmetric quenching
Christopher Campbell, Thomás Fogarty, Thomas Busch Phys. Rev. Research 4, 033014 (2022).
Quantum control and quantum speed limits in supersymmetric potentials
Christopher Campbell, Jing Li, Thomas Busch, Thomás Fogarty New J. Phys. 24 095001 (2022)
Life after OIST
Postdoctoral Researcher, University of Oulu, Finland
Fast control of interactions in an ultracold two atom system: Managing correlations and irreversibility
Thomás Fogarty, Lewis Ruks, Jing Li, and Thomas Busch SciPost Phys. 6, 021 (2019).
Waveguide-induced dispersion interaction between two two-level atoms with orthogonal in-transverse-plane dipoles
F. Le Kien, L. Ruks, and Th. Busch, Appl. Phys. B 125, 205 (2019).
Coupling between guided modes of two parallel nanofibers
Fam Le Kien, Lewis Ruks, Sile Nic Chormaic, Thomas Busch New J. Phys. 22 123007 (2020)
Spatial distributions of the fields in guided normal modes of two coupled parallel optical nanofibers
Fam Le Kien, Lewis Ruks, Sile Nic Chormaic, Thomas Busch New J. Phys. 23 043006 (2021).
Understanding and Improving Critical Metrology. Quenching Superradiant Light-Matter Systems Beyond the Critical Point
Karol Gietka, Lewis Ruks, and Thomas Busch Quantum 6, 700 (2022)
Life after OIST
Research Associate, NTT Basic Research Laboratories, Japan
Self-Pinning Transition of a Tonks-Girardeau Gas in a Bose-Einstein Condensate
Tim Keller, Thomás Fogarty, and Thomas Busch Phys. Rev. Lett. 128, 053401 (2022). Editors' Suggestion
Fermionization of a Few-Body Bose Gas Immersed into a Bose-Einstein Condensate
Tim Keller, Thomás Fogarty, Thomas Buschar
Xiv:2302.01743 (2023)
Channeling of spontaneous emission from an atom into the fundamental and higher-order modes of a vacuum-clad ultrathin optical fiber
Fam Le Kien, S. Sahar S. Hejazi, Thomas Busch, Viet Giang Truong, and Síle Nic Chormaic Phys. Rev. A 96, 043859 (2017)
Chiral force of guided light on an atom
Fam Le Kien, S. Sahar S. Hejazi, Viet Giang Truong, Síle Nic Chormaic, and Thomas Busch Phys. Rev. A 97, 063849 (2018)
Force of light on a two-level atom near an ultrathin optical fiber
Fam Le Kien, D F Kornovan, S Sahar S Hejazi, Viet Giang Truong, M I Petrov, Sile Nic Chormaic, Thomas Busch New J. Phys. 20, 093031 (2018)
Symmetry breaking in binary Bose-Einstein condensates in the presence of an inhomogeneous artificial gauge field
S. Sahar S. Hejazi, Juan Polo, Rashi Sachdeva, Thomas Busch Phys. Rev. A 102, 053309 (2020)
Life after OIST
Postdoctoral Researcher, Osaka City University, Japan
Optomechanics with a position-modulated Kerr-type nonlinear coupling
M. Mikkelsen, T. Fogarty, J. Twamley, and Th. Busch Phys. Rev. A 96, 043832 (2017)
Static and dynamic phases of a Tonks-Girardeau gas in an optical lattice
Mathias Mikkelsen, Thomás Fogarty, Thomas Busch New J. Phys. 20, 113011 (2018).
Dynamical phase transitions and temporal orthogonality in one-dimensional hard-core bosons: from the continuum to the lattice
Thomás Fogarty, Ayaka Usui, Thomas Busch, Alessandro Silva, and John Goold New J. Phys. 19, 113018 (2017)
Static and dynamic phases of a Tonks-Girardeau gas in an optical lattice
A Usui, B Buča and J Mur-Petit New J. Phys. 20, 103006 (2018).
Spin-orbit coupling in the presence of strong atomic correlations
A. Usui, T. Fogarty, S. Campbell, S.A. Gardiner, and Th. Busch New J. Phys. 22, 013050 (2020).
Bayesian parameter estimation using Gaussian states and measurements
Simon Morelli, Ayaka Usui, Elizabeth Agudelo, Nicolai Friis Quantum Sci. Technol. 6 025018 (2021)
Simulating the same physics with two distinct Hamiltonians
Karol Gietka, Ayaka Usui, Jianqiao Deng, Thomas Busch Phys. Rev. Lett. 126, 160402 (2021)
Life after OIST
Postdoctoral Researcher, Universiy of Barcelona, Spain
Non-adiabatic generation of NOON states in a Tonks--Girardeau gas
J. Schloss, A. Benseny, J. Gillet, J. Swain, and Th. Busch New J. Phys. 18, 035012 (2016)
Chaotic few-body vortex dynamics in rotating Bose-Einstein condensates
Tiantian Zhang, James Schloss, Andreas Thomasen, Lee James O'Riordan, Thomas Busch, and Angela White Phys. Rev. Fluids 4, 054701 (2019).
Life after OIST
Postdoctoral Research Associate, Massachusetts Institute of Technology (USA)
Strong coupling of a two-dimensional electron ensemble to a single-mode cavity resonators
Jiabao Chen, A. A. Zadorozhko, and D. Konstantinov Phys. Rev. B 98, 235418(2018)
Adiabatic preparation of squeezed states of oscillators and large spin systems coupled to a two-level system
Jiabao Chen, Denis Konstantinov, and Klaus Mølmer Phys. Rev. A 99, 013803
Robust boson dispenser: Quantum state preparation in interacting many-particle systems
Irina Reshodko, Albert Benseny, and Thomas Busch Phys. Rev. A 96, 023606 (2017)
Entanglement in Spatial Adiabatic Processes for Interacting Atoms
Albert Benseny, Irina Reshodko, and Thomas Busch Few-Body Syst. 59, 48 (2018)
Topological states in the Kronig-Penney model with arbitrary scattering potentials
Irina Reshodko, Albert Benseny, Judit Romhányi, Thomas Busch New. J. Phys. 21, 013010 (2019).
Life after OIST
Artificial Intelligence Researcher / Software Developer, WAY (Norway)
See more in a video by OIST addmissions from here.
Coherent transport by adiabatic passage on atom chips
T. Morgan, L.J. O'Riordan, N. Crowley, B. O'Sullivan, and Th. Busch Phys. Rev. A 88, 053618 (2013)
Moire super-lattice structures in kicked Bose-Einstein condensates
L.J. O'Riordan, A. White, and Th. Busch Phys. Rev. A 93, 023609 (2016)
Topological defect dynamics of vortex lattices in Bose-Einstein condensates
Lee James O'Riordan, Thomas Busch Phys. Rev. A 94, 053603 (2016)
Life after OIST
Postdoctoral Research Fellow, Lawrence Berkeley National Laboratory (USA)