School of Physics and CRANN, Trinity College Dublin, Dublin 2, Ireland.
Sci Adv. 2016 Apr 29;2(4):e1501748. doi: 10.1126/sciadv.1501748. eCollection 2016 Apr.
The angular momentum of light plays an important role in many areas, from optical trapping to quantum information. In the usual three-dimensional setting, the angular momentum quantum numbers of the photon are integers, in units of the Planck constant . We show that, in reduced dimensions, photons can have a half-integer total angular momentum. We identify a new form of total angular momentum, carried by beams of light, comprising an unequal mixture of spin and orbital contributions. We demonstrate the half-integer quantization of this total angular momentum using noise measurements. We conclude that for light, as is known for electrons, reduced dimensionality allows new forms of quantization.
光的角动量在许多领域都扮演着重要的角色,从光学捕获到量子信息。在通常的三维设置中,光子的角动量量子数是整数,单位为普朗克常数。我们表明,在降维情况下,光子可以具有半整数的总角动量。我们确定了一种新的总角动量形式,由光束携带,由自旋和轨道贡献的不均匀混合物组成。我们使用噪声测量来证明这种总角动量的半整数量子化。我们得出的结论是,对于光来说,正如电子一样,降低维度允许出现新的量子化形式。