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Cold molecules: Progress in Quantum Engineering of Chemistry and Quantum Matter

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arxiv 1708.02806 v2 pith:UWTTT7NV submitted 2017-08-09 physics.atom-ph

Cold molecules: Progress in Quantum Engineering of Chemistry and Quantum Matter

classification physics.atom-ph
keywords quantummoleculeschemistrycoolingfundamentalmolecularadvancedapplication
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Cooling atoms to ultralow temperatures has produced a wealth of opportunities in fundamental physics, precision metrology, and quantum science. The more recent application of sophisticated cooling techniques to molecules, which has been more challenging to implement due to the complexity of molecular structures, has now opened door to the longstanding goal of precisely controlling molecular internal and external degrees of freedom and the resulting interaction processes. This line of research can leverage fundamental insights into how molecules interact and evolve to enable the control of reaction chemistry and the design and realization of a range of advanced quantum materials.

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