Dr. Andrea Alberti

Last position:
Former email:
alberti@iap.uni-bonn.de
Former address:
Institut für Angewandte Physik Wegelerstr. 8 D-53115 Bonn Germany
External webpage:
https://orcid.org/0000-0002-1698-3895
Publications
2.
Three-dimensional imaging of single atoms in an optical lattice via helical point-spread-function engineering
Three-dimensional imaging of single atoms in an optical lattice via helical point-spread-function engineering
9.
Fast, high-precision optical polarization synthesizer for ultracold-atom experiments
Fast, high-precision optical polarization synthesizer for ultracold-atom experiments
11.
Low-entropy states of neutral atoms in polarization-synthesized optical lattices
Low-entropy states of neutral atoms in polarization-synthesized optical lattices
12.
High numerical aperture (NA = 0.92) objective lens for imaging and addressing of cold atoms
High numerical aperture (NA = 0.92) objective lens for imaging and addressing of cold atoms
17.
Atomic "bomb testing": the Elitzur-Vaidman experiment violates the Leggett-Garg inequality
Atomic "bomb testing": the Elitzur-Vaidman experiment violates the Leggett-Garg inequality
18.
Robustness of topologically protected edge states in quantum walk experiments with neutral atoms
Robustness of topologically protected edge states in quantum walk experiments with neutral atoms
21.
Quantum Walks With Neutral Atoms: Quantum Interference Effects of One and Two Particles
Quantum Walks With Neutral Atoms: Quantum Interference Effects of One and Two Particles
22.
Ideal Negative Measurements in Quantum Walks Disprove Theories Based on Classical Trajectories
Ideal Negative Measurements in Quantum Walks Disprove Theories Based on Classical Trajectories
24.
Polarisationserhaltende Vakuum-Zelle zur Anwendung oder Messung elektromagnetischer Wellen im Vakuum
Polarisationserhaltende Vakuum-Zelle zur Anwendung oder Messung elektromagnetischer Wellen im Vakuum
25.
Decoherence Models for Discrete-Time Quantum Walks and their Application to Neutral Atom Experiments
Decoherence Models for Discrete-Time Quantum Walks and their Application to Neutral Atom Experiments
29.
Microwave control of atomic motional states in a spin-dependent optical lattice
Microwave control of atomic motional states in a spin-dependent optical lattice
30.
Delocalization-enhanced Bloch oscillations and driven resonant tunneling in optical lattices for precision force measurements
Delocalization-enhanced Bloch oscillations and driven resonant tunneling in optical lattices for precision force measurements
31.
A digital atom interferometer with single particle control on a discretized spacetime geometry
A digital atom interferometer with single particle control on a discretized spacetime geometry
33.
Precision Measurement of Gravity with Cold Atoms in an Optical Lattice and Comparison with a Classical Gravimeter
Precision Measurement of Gravity with Cold Atoms in an Optical Lattice and Comparison with a Classical Gravimeter
34.
Direct Observation and Analysis of Spin-Dependent Transport of Single Atoms in a 1D Optical Lattice
Direct Observation and Analysis of Spin-Dependent Transport of Single Atoms in a 1D Optical Lattice
37.
Engineering the quantum transport of atomic wavefunctions over macroscopic distances
Engineering the quantum transport of atomic wavefunctions over macroscopic distances