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Quantum interference experiments with large molecules

机译:大分子的量子干涉实验

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Wave-particle duality is frequently the first topic students encounter in elementary quantum physics. Although this phenomenon has been demonstrated with photons, electrons, neutrons, and atoms, the dual quantum character of the famous double-slit experiment can be best explained with the largest and most classical objects, which are currently the fullerene molecules. The soccer-ball-shaped carbon cages C-60 are large, massive, and appealing objects for which it is clear that they must behave like particles under ordinary circumstances. We present the results of a multislit diffraction experiment with such objects to demonstrate their wave nature. The experiment serves as the basis for a discussion of several quantum concepts such as coherence, randomness, complementarity, and wave-particle duality. In particular, the effect of longitudinal (spectral) coherence can be demonstrated by a direct comparison of interferograms obtained with a thermal beam and a velocity selected beam in close analogy to the usual two-slit experiments using light. (C) 2003 American Association of Physics Teachers. [References: 43]
机译:波粒对偶经常是学生在基本量子物理学中遇到的第一个主题。尽管这种现象已经通过光子,电子,中子和原子得到了证明,但著名的双缝实验的双重量子特征可以用最大和最经典的物体(目前是富勒烯分子)得到最好的解释。足球状碳笼C-60是大型,大型且吸引人的物体,显然,它们在正常情况下必须表现得像颗粒。我们提出了与这些对象的多缝衍射实验的结果,以证明其波的性质。实验是讨论一些量子概念(如相干性,随机性,互补性和波粒对偶性)的基础。特别地,可以通过直接比较使用热光束和速度选择光束获得的干涉图来证明纵向(光谱)相干效果,该干涉图与使用光的常规两缝实验非常相似。 (C)2003年美国物理教师协会。 [参考:43]

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