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    • 1. 发明公开
    • TWO-DIMENSIONAL PHOTONIC CRYSTAL SURFACE LIGHT EMITTING LASER LIGHT SOURCE
    • OBERFLÄCHENEMITTIERENDELASERLICHTQUELLE MIT EINEM ZWEIDIMENSIONALEN PHOTONISCHEN KRISTALL
    • EP1933431A1
    • 2008-06-18
    • EP06783175.0
    • 2006-09-05
    • Kyoto UniversityROHM CO., LTD.
    • NODA, SusumuMIYAI, EijiOHNISHI, Dai
    • H01S5/18
    • H01S5/105H01S5/0425H01S5/18308H01S5/18358H01S2301/18
    • The present invention intends to provide a surface-emitting laser light source using a two-dimensional photonic crystal in which the efficiency of extracting light in a direction perpendicular to the surface is high. In a laser light source provided with a two-dimensional photonic crystal layer 24 created from a plate-shaped matrix body in which a large number of holes 25 are periodically arranged and an active layer 23 arranged on one side of the two-dimensional photonic crystal layer 24, the holes 25 are created to be columnar with a predetermined cross-sectional shape such as a circular shape, and the main axis of each of the columnar holes is tilted to a surface of the matrix body. When provided with this two-dimensional photonic crystal layer 24, the surface-emitting laser source using a two-dimensional photonic crystal has a Q ⊥ value (i.e. a Q value in a direction perpendicular to the surface) of several thousands, which is suitable for an oscillation of laser light, and the efficiency of extracting light is high in the direction perpendicular to the surface.
    • 本发明旨在提供使用二维光子晶体的表面发射激光光源,其中在垂直于表面的方向上提取光的效率高。 在设置有二维光子晶体层24的激光光源中,该二维光子晶体层24由周期性排列有大量孔25的板状矩阵体和在二维光子晶体一侧配置的有源层23 如图24所示,孔25被形成为具有预定横截面形状的圆柱状,例如圆形,并且每个柱状孔的主轴倾斜到矩阵体的表面。 当提供这个二维光子晶体层24时,使用二维光子晶体的表面发射激光源具有数千的QŠ值(即垂直于表面的方向的Q值),这是 适合于激光的振荡,并且在垂直于表面的方向上提取光的效率高。
    • 2. 发明公开
    • TWO-DIMENSIONAL PHOTONIC CRYSTAL SURFACE LIGHT-EMITTING LASER LIGHT SOURCE
    • LICHTEMITTIERENDE LASERLICHTQULELE MIT ZWEIDIMENSIONALEROBERFLÄCHEAUS PHOTONISCHEM KRISTALL
    • EP2006965A2
    • 2008-12-24
    • EP07736997.3
    • 2007-03-30
    • Kyoto UniversityRohm Co., Ltd.
    • NODA, SusumuKUROSAKA, YoshitakaMIYAI, EijiOHNISHI, DaiKUNISHI, Wataru
    • H01S5/18
    • H01S5/183H01S5/105
    • A two-dimensional photonic crystal surface emitting laser light source according to the present invention includes a two-dimensional photonic crystal made of a plate-shaped body material provided with a periodic arrangement of identically-shaped holes 242A and an active layer provided on one side of the two-dimensional photonic crystal. The hole 242A is not located on a first half-line 251 extending from the gravity center G1 of the hole in a direction within the plane of the two-dimensional photonic crystal, while the hole 242A is located at least on a portion of a second half-line 252 extending from the gravity center G1 in the direction opposite to the first half-line 251. Injecting electric charges into the active layer generates light, which creates an electric field that encircles the gravity center G1 within the two-dimensional photonic crystal. For a given point on the second half-line 252 at which the hole 242A is located, there is no hole at a point that is symmetrical to the aforementioned point with respect to the gravity center G1, so that there is a difference in the refractive index between the two points. Thus, the electric field vectors at the two points are prevented from canceling each other due to destructive interference, so that the resultant laser light is stronger than conventional examples.
    • 根据本发明的二维光子晶体发射激光光源包括由板状主体材料制成的二维光子晶体,该二维光子晶体设置有相同形状的孔242A和设置在一侧的活性层的周期性排列 的二维光子晶体。 孔242A不位于从二维光子晶体的平面内的孔的重心G1延伸的第一半线251上,而孔242A至少位于二次光子晶体的一部分上 从重心G1沿着与第一半线251相反的方向延伸的半线252.向有源层注入电荷产生光,其产生围绕二维光子晶体内的重心G1的电场 。 对于孔242A所在的第二半线252上的给定点,在相对于重心G1与上述点对称的点处没有孔,因此折射率 两点之间的指标。 因此,防止两点处的电场矢量由于相消干涉而彼此抵消,使得所得到的激光比传统示例更强。
    • 4. 发明公开
    • TWO-DIMENSIONAL PHOTONIC CRYSTAL SURFACE LIGHT EMITTING LASER
    • LICHTEMITTIERENDER LASER MIT ZWEIDIMENSIONALER PHOTONISCHERKRISTALLOBERFLÄCHE
    • EP1998419A1
    • 2008-12-03
    • EP07736924.7
    • 2007-03-20
    • Rohm Co., Ltd.
    • NODA, SusumuMIYAI, EijiSAKAI, KyosukeOHNISHI, DaiKUNISHI, Wataru
    • H01S5/18G02B27/28G11B7/125
    • H01S5/18355G11B7/127H01S5/026H01S5/105
    • An objective of the present invention is to provide a laser capable of producing a radially polarized laser beam with an annular cross section. A laser oscillator 60 including an active layer 53 and two-dimensional photonic crystal 55 with circular holes 552 arranged in a square lattice pattern is provided between two electrodes 571 and 572. A first polarization control layer 581, which functions as a half-wave plate, and a second polarization control layer 582, which functions as a half-wave plate with a fast axis 592 extending at an angle of 45° to that of the first polarization control layer 581, are located on the laser oscillator 60. When a voltage is applied between the electrodes, a circumferentially polarized annular laser beam is emitted from the laser oscillator 60. When passing through the first polarization control layer 581 and the second polarization control layer 582, the laser beam is converted to a radially polarized beam. The resultant laser beam can be converged by a focusing lens to achieve a diameter smaller than the diffraction limit. Such a narrow beam is suitable for an optical pickup or many other devices.
    • 本发明的目的是提供一种能够产生具有环形横截面的径向偏振激光束的激光器。 在两个电极571和572之间设置包括活性层53和具有以正方形格子图案排列的圆形孔552的二维光子晶体55的激光振荡器60.第一偏振控制层581用作半波片 ,并且作为半波片的第二偏光控制层582位于激光振荡器60上,该半波片具有与第一偏振控制层581成45°的角度延伸的快轴592。 施加在电极之间,从激光振荡器60发射周向极化的环形激光束。当通过第一偏振控制层581和第二偏振控制层582时,将激光束转换成径向偏振光束。 所得到的激光束可以被聚焦透镜会聚,以获得小于衍射极限的直径。 这种窄光束适用于光学拾取器或许多其他装置。