Quantum Simulation

Quantum Technologies for Information Science (QUTIS)

Website: 
Research Type: 
Theory

QUTIS develops interdisciplinary research in:

  • Quantum Information
  • Quantum Technologies
  • Quantum Optics
  • Superconducting Circuits
  • Quantum Biomimetics
Leader: 
Prof. Enrique Solano

Quantum dynamics and control

Research Type: 
Theory
  • time-dependent quantum phenomena
  • optimal control theory
  • atomic, molecular and optical physics
  • ultracold gases
  • quantum information processing with ultracold atoms and molecules
Leader: 
Christiane Koch

Open Quantum Systems and Entanglement

Website: 
Research Type: 
Theory
Leader: 
Prof. Sabrina Maniscalco

Ion Quantum Technology Group

Research Type: 
Experiment
  • Quantum computing
  • Quantum simulation
  • Quantum sensing
  • Quantum control
  • Quantum Engineering
  • Ion trapping
Leader: 
Prof. Winfried K. Hensinger

CNR-IMM QUantum INformation in Nanostriuctures

Website: 
Research Type: 
Theory
  • Quantum Information with superconducting devices
  • Noise and Decoherence: quantum control and dynamical quantum sensing
  • Ultrastrongly coupled quantum coherent architectures
  • Entanglement in many body systems and distributed architectures
  • Atomtronics
Leader: 
Giuseppe Falci

RCQI Bratislava

Research Type: 
Theory

 

  • Quantum information theory
  • Quantum measurement theory
  • Quantum walks
  • Quantum protocols
  • Quantum foundations
  • Quantum optics

 

Leader: 
Mário Ziman

Quantum Information and Quantum Simulation

Research Type: 
Theory
  • Decoherence
  • Entanglement
  • Quantum Simulation
  • Quantum Zeno effect
  • Quantum measurements
  • Semiclassical limit
  • Quantum-classical transition
  • Quantum chaos and diffusion
  • Control of decoherence
Leader: 
Saverio Pascazio

Applied Quantum Mechanics - Quantum Technology Lab

Research Type: 
Theory
Experiment
  • Quantum information
  • Quantum communication
  • Quantum optics
  • Quantum estimation
  • Cold atoms
  • BEC matter
  • Cavity QED
  • Open quantum systems and non-Markovianity
  • Experiments with continuos variables
  • Experiments with discrete variables (polarization entanglement)
Leader: 
Matteo Paris

Quantum Device Lab

Research Type: 
Experiment
  • Superconducting Quantum Information Processing
  • Quantum Optics
  • Cavity/Circuit Quantum Electrodynamics
  • Mesoscopic Physics
Leader: 
Andreas Wallraff

Quantum technologies with individual neutral atoms

Research Type: 
Experiment
  • Quantum walks with neutral atoms in optical lattices
  • Cavity QED with single atoms and small ensembles
Leader: 
Dieter Meschede
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