Anton Frisk Kockum
Anton Frisk Kockum forskar på kvantoptik och kvantinformation. Hans forskningsintressen inkluderar kvantelektrodynamik i supraledande kretsar, ultrastark koppling mellan ljus och materia, kvantakustik, och kvantmaskininlärning. Anton doktorerade i fysik vid Chalmers 2014 och flyttade därefter till Japan, där han var postdoktor i professor Franco Noris grupp vid RIKEN, hjälpt av ett stipendium från Japan Society for the Promotion of Science. 2018 flyttade han tillbaka till Sverige för en fast tjänst som forskare vid Wallenberg Centre for Quantum Technology. Här jobbar han främst med teori som understödjer byggandet av en kvantdator och hjälper till att förstå vilka program som bör köras på en sådan dator.
Visar 58 publikationer
Extended quantum process tomography of logical operations on an encoded bosonic qubit
Tuning atom-field interaction via phase shaping
Quantum amplification and simulation of strong and ultrastrong coupling of light and matter
Signal Crosstalk in a Flip-Chip Quantum Processor
Unconventional saturation effects at intermediate drive in a lossy cavity coupled to few emitters
Quantum process tomography of continuous-variable gates using coherent states
Gradient-Descent Quantum Process Tomography by Learning Kraus Operators
Interaction between giant atoms in a one-dimensional structured environment
Mitigation of frequency collisions in superconducting quantum processors
Giant emitters in a structured bath with non-Hermitian skin effect
Gaussian conversion protocol for heralded generation of generalized Gottesman-Kitaev-Preskill states
Measuring the quantum state of photoelectrons
The XYZ(2) hexagonal stabilizer code
Chiral quantum optics with giant atoms
Giant Atoms in a Synthetic Frequency Dimension
Error-rate-agnostic decoding of topological stabilizer codes
Universal Fidelity Reduction of Quantum Operations from Weak Dissipation
Deterministic Loading of Microwaves onto an Artificial Atom Using a Time-Reversed Waveform
Deterministic one-way logic gates on a cloud quantum computer
Building blocks of a flip-chip integrated superconducting quantum processor
Robust Preparation of Wigner-Negative States with Optimized SNAP-Displacement Sequences
Electrical control of quantum acoustics
Organic charged polaritons in the ultrastrong coupling regime
Quantum State Tomography with Conditional Generative Adversarial Networks ()
Tunable Chiral Bound States with Giant Atoms
Ultimate quantum limit for amplification: A single atom in front of a mirror
Characterizing decoherence rates of a superconducting qubit by direct microwave scattering
Engineering the level structure of a giant artificial atom in waveguide quantum electrodynamics
Fast Multiqubit Gates through Simultaneous Two-Qubit Gates
Classification and reconstruction of optical quantum states with deep neural networks ()
Oscillating bound states for a giant atom
Waveguide quantum electrodynamics with superconducting artificial giant atoms
Simulating ultrastrong-coupling processes breaking parity conservation in Jaynes-Cummings systems
Deep Q-learning decoder for depolarizing noise on the toric code
Large Collective Lamb Shift of Two Distant Superconducting Artificial Atoms
Interaction of Mechanical Oscillators Mediated by the Exchange of Virtual Photon Pairs
Ultrastrong coupling between light and matter
Photodetection probability in quantum systems with arbitrarily strong light-matter interaction
Decoherence-Free Interaction between Giant Atoms in Waveguide Quantum Electrodynamics
Dissipation and thermal noise in hybrid quantum systems in the ultrastrong-coupling regime
Giant acoustic atom: A single quantum system with a deterministic time delay
Quantum Acoustics with Surface Acoustic Waves
Probing the quantum vacuum with an artificial atom in front of a mirror
Designing frequency-dependent relaxation rates and Lamb shifts for a giant artificial atom
Propagating phonons coupled to an artificial atom
Quantum Nondemolition Detection of a Propagating Microwave Photon
Giant Cross–Kerr Effect for Propagating Microwaves Induced by an Artificial Atom
Breakdown of the Cross-Kerr Scheme for Photon Counting
Measurement Back-Action and Photon Detection in Microwave Quantum Optics
Undoing measurement-induced dephasing in circuit QED
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Visar 3 forskningsprojekt
Simulating non-Hermitian many-body topological phases with giant atoms (SING-ATOM)
Kvantsimulering och kvantkommunikation med stora atomer
Stora atomer - en ny regim för kvantoptik