Interaction-induced ferroelectricity in the rotational states of polar molecules
Author:
Publisher
American Physical Society (APS)
Subject
Atomic and Molecular Physics, and Optics
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevA.81.031601/fulltext
Reference26 articles.
1. A High Phase-Space-Density Gas of Polar Molecules
2. Focus on Cold and Ultracold Molecules
3. Quantum Computation with Trapped Polar Molecules
4. Strongly Correlated 2D Quantum Phases with Cold Polar Molecules: Controlling the Shape of the Interaction Potential
5. Cold polar molecules in two-dimensional traps: Tailoring interactions with external fields for novel quantum phases
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1. Quantum control of molecular rotation;Reviews of Modern Physics;2019-09-18
2. Spinor Bose-Einstein condensates of rotating polar molecules;Physical Review A;2015-09-25
3. Ferroelectric quantum phase transition with cold polar molecules;New Journal of Physics;2015-08-05
4. Stability of a trapped dipolar quantum gas;Physical Review A;2015-01-13
5. Quantum Rotor Model for a Bose-Einstein Condensate of Dipolar Molecules;Physical Review Letters;2013-11-19
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