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首页> 外文期刊>Journal of Modern Optics >Field quantization, photons and non-Hermitean modes
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Field quantization, photons and non-Hermitean modes

机译:场量化,光子和非赫米特模式

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Field quantization in unstable optical systems is treated by expanding the vector potential in terms of non-Hermitean (Fox-Li) modes. We define non-Hermitean modes and their adjoints in both the cavity and external regions and make use of the important bi-orthogonality relationships that exist within each mode set. We employ a standard canonical quantization procedure involving the introduction of generalized coordinates and momenta for the electromagnetic (EM) field. Three-dimensional systems are treated, making use of the paraxial and monochromaticity approximations for the cavity non-Hermitean modes. We show that the quantum EM field is equivalent to a set of quantum harmonic oscillators (QHOs), associated with either the cavity or the external region non-Hermitean modes, and thus confirming the validity of the photon model in unstable optical systems. Unlike in the conventional (Hermitean mode) case, the annihilation and creation operators we define for each QHO are not Hermitean adjoints. It is shown that the quantum Hamiltonian for the EM field is the sum of non-commuting cavity and external region contributions, each of which can be expressed as a sum of independent QHO Hamiltonians for each non-Hermitean mode, except that the external field Hamiltonian also includes a coupling term responsible for external non-Hermitean mode photon exchange processes. The non-commutativity of certain cavity and external region annihilation and creation operators is associated with cavity energy gain and loss processes, and may be described in terms of surface integrals involving cavity and external region non-Hermitean mode functions on the cavity-external region boundary. Using the essential states approach and the rotating wave approximation, our results are applied to the spontaneous decay of a two-level atom inside an unstable cavity. We find that atomic transitions leading to cavity non-Hermitean mode photon absorption are associated with a different coupling constant to that for transitions leading to photon emission, a feature consequent on the use of non-Hermitean mode functions. We show that under certain conditions the spontaneous decay rate is enhanced by the Petermann factor.
机译:通过扩展非赫米特(Fox-Li)模式下的矢量电势来处理不稳定光学系统中的场量化。我们在腔体和外部区域中定义非赫米特模式及其伴随,并利用每个模式集中存在的重要双正交关系。我们采用标准的规范化量化程序,包括引入电磁场(EM)的广义坐标和动量。使用腔非赫米特模的近轴和单色近似处理三维系统。我们表明,量子电磁场等效于一组与腔或外部区域非赫米特模式相关的量子谐波振荡器(QHOs),从而确认了光子模型在不稳定光学系统中的有效性。与常规(赫米特模式)情况不同,我们为每个QHO定义的an灭和创建运算符都不是厄米特伴随。结果表明,电磁场的量子哈密顿量是非换能腔和外部区域贡献的总和,除了外场哈密顿量外,每个均可以表示为每个非厄密模式的独立QHO哈密顿量之和。还包括负责外部非赫米特模式光子交换过程的耦合项。某些腔和外部区域an灭和生成算子的非交换性与腔能量获取和损失过程相关,并且可以用涉及腔和外部区域非腔模式函数的表面积分来描述腔-外部区域边界。使用基本态方法和旋转波逼近,我们的结果被应用于不稳定腔体内两能级原子的自发衰减。我们发现,导致腔非赫米特模式光子吸收的原子跃迁与耦合常数与导致光子发射的跃迁具有不同的耦合常数,这是使用非赫米特模式功能所导致的特征。我们表明,在一定条件下,自发衰减率通过彼得曼因子得到增强。

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