论文标题

反物质重力:第二个量化和拉格朗日形式主义

Antimatter Gravity: Second Quantization and Lagrangian Formalism

论文作者

Jentschura, Ulrich D.

论文摘要

CPT定理在落在地球上的苹果中的应用导致了对抗生产力(不在地球上)的反苹果的描述。在显微镜水平上,弯曲时空中的狄拉克方程同时描述了自旋-1/2颗粒及其对抗粒子与相同的弯曲时空度量标准耦合(例如,描述地球重力场的度量标准)。因此,在宏观水平上,电磁和重力耦合的狄拉克方程同时描述了苹果和反苹果,同时落在地球上。因此,重力耦合dir​​ac方程的粒子到抗逆转录转换可产生有关“地球上的反苹果”行为的信息。但是,由于电荷结合的操作在弯曲方面更为复杂,而不是平坦的时空,因此问题加剧了问题。我们的治疗基于第二量化现场操作员,并使用拉格朗日形式主义。作为我们计算的先决条件,我们在弯曲时空中建立了狄拉克伴随的一般形式。根据定理,我们驳斥了很小但潜在的粒子抗对称性术语的存在,这些术语已在文献中进行了研究。讨论了反物质重力实验的后果。

The application of the CPT theorem to an apple falling on Earth leads to the description of an anti-apple falling on anti-Earth (not on Earth). On the microscopic level, the Dirac equation in curved space-time simultaneously describes spin-1/2 particles and their antiparticles coupled to the same curved space-time metric (e.g., the metric describing the gravitational field of the Earth). On the macroscopic level, the electromagnetically and gravitationally coupled Dirac equation therefore describes apples and anti-apples, falling on Earth, simultaneously. A particle-to-antiparticle transformation of the gravitationally coupled Dirac equation therefore yields information on the behavior of "anti-apples on Earth". However, the problem is exacerbated by the fact that the operation of charge conjugation is much more complicated in curved as opposed to flat space-time. Our treatment is based on second-quantized field operators and uses the Lagrangian formalism. As an additional helpful result, prerequisite to our calculations, we establish the general form of the Dirac adjoint in curved space-time. On the basis of a theorem, we refute the existence of tiny, but potentially important, particle-antiparticle symmetry breaking terms whose possible existence has been investigated in the literature. Consequences for antimatter gravity experiments are discussed.

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