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2D Whispering Gallery vs. 3D Whispering Cave

机译:2D耳语画廊与3D耳语洞穴

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Lord Rayleigh's 2 dimensional (2D) whispering gallery mode (WGM) is based upon 2D total internal reflection (TIR) while 3D whispering cave mode (WCM) is based upon 3D TIR. 3D WCM is however irreducible to 2D WGM: The 2D WGM is confined to a thin microdisk with a cylindrical symmetry solvable via Bessel function analysis while the 3D WCM is confined to a virtual toroid with a circular helix symmetry not reducible to a simple 2D symmetry. The 3D WCM laser is surface-normal dominant and has no in-plane resonance while the 2D WGM laser is in-plane dominant. Apart from the regular 2D WGM, the 3D WCM's major polarization state favors a strong carrier-photon coupling for the carriers in the planar quantum wells, such that the powerful transient coupling generates photonic quantum rings (PQRs), or concentric quantum rings with a half-wavelength pitch of imminently recombinant carriers, i.e., a photonic quantum corral effect. This feature is responsible for the low threshold currents and thermally stable spectra, which opens the way for easy optical mega-pixel ('Omega') chip fabrications. For the GaAs device size less than 1 um, the increasing intermode spacing leads to a single eigenmode PQR laser with a record low threshold current of 300 nA.. Moreover PQR 'holes', or microholes in the quantum well plane, give rise to an unusual 'convex' WCM laser via gain guiding effects. Mega-pixel PQR 'hole' laser chips are easier to fabricate than PQR 'mesa' chips, and both will be useful for optoelectronic VLSI, ITS, and biocell sorting.
机译:瑞利的2维(2D)回音壁模式(WGM)是基于2D全内反射(TIR)而3D耳语洞穴模式(WCM)是基于3D TIR。 3D WCM然而束缚到2D WGM:二维WGM被限制到薄的微盘具有圆柱形对称性可解通过贝塞尔函数分析当3D WCM被限制在虚拟环形线圈具有圆形螺旋对称性不能还原为一个简单的2D对称性。所述3D WCM激光是表面法线显性和不具有面内共振,而2D WGM激光是面内占主导地位。除了普通的2D WGM,所述3D WCM的主要偏振态有利于强烈载体光子耦合用于在平面量子阱的载流子,使得有力瞬态耦合产生光量子环(PQRS),或同心量子环与一个半迫切重组的载体,即,光量子畜栏效果的1/4波长节距。此功能是负责低阈值电流和热稳定的光谱,这对于容易光学百万像素(“欧米茄”)芯片捏造开辟了道路。对于GaAs器件尺寸小于1微米,则增加模式间间隔通向单本征模PQR激光为300μA的记录低的阈值电流。而且PQR“洞”,或微孔中的量子阱的平面,产生一个不寻常的“凸”经由增益引导效果WCM激光。百万像素PQR“洞”激光芯片相比,是容易PQR“台面”的芯片来制造,并且两者都将是有用的用于光电VLSI,ITS,和分选的Biocell。

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