Nakata Toshihiko, Watanabe Masahiro
Production Engineering Research Laboratory, Hitachi Ltd., 292 Yoshida-cho,Totsuka-ku, Yokohama 244-0817, Japan.
Appl Opt. 2009 Mar 1;48(7):1322-7. doi: 10.1364/ao.48.001322.
We present a common-path phase-shifting interferometer in which photonic crystal polarizers (PCPs) are utilized as a reference mirror and a phase shifter, allowing ultracompact and highly sensitive optics. When a laser beam polarized at 45 degrees relative to the optical axis of the PCp-based reference mirror is incident, the polarization component parallel to the optical axis (s-polarized beam) is reflected and used as a reference beam. The perpendicular component (p-polarized beam) passes through the PCP coupled with a quarter-wave plate (QWP) and serves as a probe beam. This beam, with its polarization transformed in the sequence p, right-circular, s, left-circular, and p, irradiates the sample surface twice, doubling the phase change due to displacement of the sample. The probe beam is then retransmitted through the PCP, where it recombines with the reference beam. Four interferogram channels in phase quadrature are generated using a newly developed phase shifter, composed of a QWP and a monolithically integrated array of four PCPs. Preliminary experiments demonstrate that the PCPs perform successfully as a reference mirror and a phase shifter, and that the interferometer has a remarkable displacement sensitivity, as low as 40 pm.
我们展示了一种共光路相移干涉仪,其中光子晶体偏振器(PCP)被用作参考镜和相移器,从而实现超紧凑且高灵敏度的光学系统。当一束相对于基于PCP的参考镜光轴偏振成45度的激光束入射时,平行于光轴的偏振分量(s偏振光束)被反射并用作参考光束。垂直分量(p偏振光束)穿过与四分之一波片(QWP)耦合的PCP并用作探测光束。该光束的偏振按p、右旋圆偏振、s、左旋圆偏振和p的顺序变换,对样品表面进行两次照射,使由于样品位移引起的相位变化加倍。然后探测光束重新透过PCP,在那里它与参考光束重新组合。使用新开发的由QWP和四个PCP单片集成阵列组成的相移器,产生四个相位正交的干涉图通道。初步实验表明,PCP作为参考镜和相移器成功发挥作用,并且该干涉仪具有高达40 pm的显著位移灵敏度。