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      Effect of nuclear spin symmetry in cold and ultracold reactions: D + para/ortho-H2

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      New Journal of Physics
      IOP Publishing

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          Cold controlled chemistry.

          Collisions of molecules in a thermal gas are difficult to control. Thermal motion randomizes molecular encounters and diminishes the effects of external radiation or static electromagnetic fields on intermolecular interactions. The effects of the thermal motion can be reduced by cooling molecular gases to low temperatures. At temperatures near or below 1 K, the collision energy of molecules becomes less significant than perturbations due to external fields. At the same time, inelastic scattering and chemical reactions may be very efficient in low-temperature molecular gases. The purpose of this article is to demonstrate that collisions of molecules at temperatures below 1 K can be manipulated by external electromagnetic fields and to discuss possible applications of cold controlled chemistry. The discussion focuses on molecular interactions at cold (0.001-2 K) and ultracold (<0.001 K) temperatures and is based on both recent theoretical and experimental work. The article concludes with a summary of current challenges for theory and experiment in the research of cold molecules and cold chemistry.
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            An improved log derivative method for inelastic scattering

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              ABC: a quantum reactive scattering program

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                Author and article information

                Journal
                New Journal of Physics
                New J. Phys.
                IOP Publishing
                1367-2630
                June 01 2015
                June 01 2015
                : 17
                : 6
                : 065003
                Article
                10.1088/1367-2630/17/6/065003
                e4524c38-ff86-4901-b78d-4d62758e90bb
                © 2015

                http://iopscience.iop.org/info/page/text-and-data-mining

                http://creativecommons.org/licenses/by/3.0/

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