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Quantum encounters of the cold kind

机译:量子遇到冷态

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Since the introduction of laser-cooling techniques for neutral atoms in the early 1980s, the study of collisional interactions between atoms and molecules has been extended to the regime of ultracold temperatures. With nanokelvin temperatures now attainable, our ability to probe the interactions, both experimentally and theoretically, has also progressed. Understanding of the subtle and often highly quantum-mechanical effects that are manifest at such low energies has advanced to the point where new precision measurements are matched by highly accurate theoretical calculations. Low-energy phenomena such as Bose-Einstein condensation and the photoassociation of atoms into bound molecules are now accurately described with no free parameters.
机译:自从1980年代初期引入用于中性原子的激光冷却技术以来,原子与分子之间的碰撞相互作用的研究已扩展到超冷温度范围。由于现在可以达到纳氏开尔文温度,我们在实验和理论上探测相互作用的能力也得到了发展。对在如此低的能量下表现出来的微妙且通常是高度量子力学效应的理解已经发展到了新的精度测量与高精度理论计算相匹配的地步。现在,没有自由参数,就可以准确地描述低能现象,例如玻色-爱因斯坦缩合和原子与结合分子的光缔合。

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