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Dirac's classical-quantum analogy for the harmonic oscillator: Classical aspects in thermal radiation including zero-point radiation

机译:Dirac的谐波振荡器的古典量子类比:热辐射中的经典方面,包括零点辐射

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Dirac's Poisson-bracket-to-commutator analogy for the transition from classical to quantum mechanics assures that for many systems, the classical and quantum systems share the same algebraic structure. The quantum side of the analogy (involving operators on Hilbert space with commutators scaled by Planck's constant h) not only gives the algebraic structure but also dictates the average values of physical quantities in the quantum ground state. On the other hand, the Poisson brackets of nonrelativistic mechanics, which give only the classical canonical transformations, do not give any values for physical quantities. Rather, one must go outside nonrelativistic classical mechanics in order to obtain a fundamental phase space distribution for classical physics. We assume that the values of physical quantities in classical theory at any temperature depend on the phase space probability distribution that arises from thermal radiation equilibrium including classical zero-point radiation with the scale set by Planck's constant h. All mechanical systems in thermal radiation will inherit the constant h from thermal radiation. Here, we note the connections between classical and quantum theories (agreement and contrasts) at all temperatures for the harmonic oscillator in one and three spatial dimensions. (C) 2020 American Association of Physics Teachers.
机译:Dirac的Poisson-Bracket-to-andutator为从经典转换到量子力学的转换,确保了许多系统,古典和量子系统共享相同的代数结构。类比的量子侧(涉及通过普拉克常数h缩放的换向器的换向器上的运营商)不仅给出了代数结构,而且还决定了量子地面状态中物理量的平均值。另一方面,仅提供经典的规范转化的非旋钮括号,不给出物理量的任何值。相反,必须走出非椭圆的经典机制,以获得古典物理学的基本相空间分布。我们假设在任何温度下经典理论中物理量的值取决于热辐射平衡所产生的相位空间概率分布,包括普通常量H设置的刻度零点辐射。热辐射中的所有机械系统都会从热辐射继承恒定的H.在这里,我们注意到在一个和三个空间尺寸的谐波振荡器的所有温度下的经典和量子理论(协议和对比)之间的连接。 (c)2020美国物理教师协会。

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