Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental properties of quantum many-body systems. In particular, the high degree of control of experimental parameters has allowed the study of many interesting phenomena, such as quantum phase transitions and quantum spin dynamics. Here we demonstrate how such control can be implemented at the most fundamental level of a single spin at a specific site of an optical lattice. Using a tightly focused laser beam together with a microwave field, we were able to flip the spin of individual atoms in a Mott insulator with sub-diffraction-limited resolution, well below the lattice spacing. The Mott insulator provided us with a large two-dimensional array of pe...
The reliable detection of single quantum particles has revolutionized the field of quantum optics an...
The reliable detection of single quantum particles has revolutionized the field of quantum optics an...
Atoms in optical lattices are promising candidates to implement quantum information processing. Thei...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PD...
Mott insulators of ultracold atoms in optical lattices are widely used as an experimental platform f...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, February, 2020Cataloge...
Optical lattices make it possible to trap and coherently control large ensembles of ultracold atoms....
An optical lattice is a periodic potential for atoms, created using a standing wave pattern of lig...
The reliable detection of single quantum particles has revolutionized the field of quantum optics an...
Optical lattices make it possible to trap and coherently control large ensembles of ultracold atoms....
The reliable detection of single quantum particles has revolutionized the field of quantum optics an...
The reliable detection of single quantum particles has revolutionized the field of quantum optics an...
The reliable detection of single quantum particles has revolutionized the field of quantum optics an...
Atoms in optical lattices are promising candidates to implement quantum information processing. Thei...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PD...
Mott insulators of ultracold atoms in optical lattices are widely used as an experimental platform f...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, February, 2020Cataloge...
Optical lattices make it possible to trap and coherently control large ensembles of ultracold atoms....
An optical lattice is a periodic potential for atoms, created using a standing wave pattern of lig...
The reliable detection of single quantum particles has revolutionized the field of quantum optics an...
Optical lattices make it possible to trap and coherently control large ensembles of ultracold atoms....
The reliable detection of single quantum particles has revolutionized the field of quantum optics an...
The reliable detection of single quantum particles has revolutionized the field of quantum optics an...
The reliable detection of single quantum particles has revolutionized the field of quantum optics an...
Atoms in optical lattices are promising candidates to implement quantum information processing. Thei...