JILA, National Institute of Standards and Technology and University of Colorado Boulder, Boulder, CO 80309-0440, USA.
Science. 2017 Sep 8;357(6355):1002-1010. doi: 10.1126/science.aam6299. Epub 2017 Sep 7.
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 owing to the complexity of molecular structures, has now opened the 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.
将原子冷却到超低温在基础物理、精密测量和量子科学领域产生了丰富的机会。最近,由于分子结构的复杂性,更复杂的冷却技术在分子上的应用更具挑战性,但现在为精确控制分子内外自由度以及由此产生的相互作用过程这一长期目标打开了大门。这条研究路线可以利用对分子相互作用和演化的基本认识,来实现对反应化学的控制以及一系列先进量子材料的设计和实现。