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Magneto-optical control of the group velocity of light in an inhomogeneously broadened medium

机译:非均匀加宽介质中光的群速度的磁光控制

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We investigate the use of a magnetic field, in conjunction with an elliptically polarized laser field, to control the group velocity of light in an inhomogeneously broadened medium. We show both theoretically and experimentally that the dispersion and hence, the speed of light in an atomic system, having V-configuration with Zeeman sublevels as their excited states, can be effectively controlled magneto-optically. We present approximate analytical solutions for a homogeneously broadened medium and numerical solutions for both a homogeneously and an inhomogeneously broadened medium. We show that while one can tune the speed of light from subluminal to superluminal with the magnetic field in a static or cooled medium with V-type atoms, in hot atoms one can achieve an efficient magneto-optical tunability in the subluminal regime. We experimentally demonstrate such control of light speed using a single elliptically polarized light and a moderately strong magnetic field in a 87Rb vapor cell. We propose to use the optical field for coarse control and the magnetic field for finer control of the light speed in an atomic medium.
机译:我们研究了结合椭圆偏振激光场使用磁场来控制非均匀加宽介质中光的群速度。我们在理论上和实验上都表明,可以有效地磁光控制以塞曼子能级作为激发态的V构型的原子系统中的色散以及光速。我们为均匀扩展的介质提供了近似的解析解,并且为均匀扩展的介质和非均匀扩展的介质都提供了数值解。我们表明,尽管可以在具有V型原子的静态或冷却介质中通过磁场将光的速度从腔内调节到超腔,但在热原子中,人们可以在腔内体系中实现有效的磁光可调谐性。我们实验性地证明了这种光速的控制是在87Rb蒸汽电池中使用单个椭圆偏振光和中等强度的磁场。我们建议在原子介质中使用光场进行粗略控制,并使用磁场对光速进行精细控制。

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