O'Dwyer D P, Phelan C F, Rakovich Y P, Eastham P R, Lunney J G, Donegan J F
School of Physics, Trinity College Dublin, Dublin 2, Ireland.
Opt Express. 2010 Aug 2;18(16):16480-5. doi: 10.1364/OE.18.016480.
When a left-circularly polarised Gaussian light beam, which has spin angular momentum (SAM) J(sp) = sigmah = 1h per photon, is incident along one of the optic axes of a slab of biaxial crystal it undergoes internal conical diffraction and propagates as a hollow cone of light in the crystal. The emergent beam is a superposition of equal amplitude zero and first order Bessel like beams. The zero order beam is left-circularly polarised with zero orbital angular momentum (OAM) J(orb) = [see text]h = 0, while the first order beam is right-circularly polarized but carries OAM of J(orb) = 1h per photon. Thus, taken together the two beams have zero SAM and J(orb) = (1/2)h per photon. In this paper we examine internal conical diffraction of an elliptically polarised beam, which has fractional SAM, and demonstrate an all-optical process for the generation light beams with fractional OAM up to +/- 1h.
当具有自旋角动量(SAM)(J_{sp}=\sigma\hbar = 1\hbar) 每个光子的左旋圆偏振高斯光束沿双轴晶体平板的一个光轴入射时,它会经历内锥衍射,并在晶体中作为空心光锥传播。出射光束是等幅零阶和一阶类贝塞尔光束的叠加。零阶光束是左旋圆偏振的,轨道角动量(OAM)(J_{orb} = [见文本]\hbar = 0),而一阶光束是右旋圆偏振的,但每个光子携带(J_{orb} = 1\hbar) 的OAM。因此,这两束光合起来的总自旋角动量为零,且每个光子的(J_{orb} = (1/2)\hbar)。在本文中,我们研究了具有分数自旋角动量的椭圆偏振光束的内锥衍射,并展示了一种全光学过程,用于产生分数轨道角动量高达(\pm 1\hbar) 的光束。