论文标题
量化场的双光理论
The Bimetric Theory Of Quantized Fields
论文作者
论文摘要
我们引入了具有保留经典能量条件的量化场的特殊类别理论。更确切地说,我们将可见宇宙中缺失的抗粒子描述为被困在带有不同度量的时空贴片中,例如De-Stitter时空和负能量。为了稳定这些抗国家,与Feynman-Stückelberg的解释相一致,时间必须与我们可见的宇宙相反。由于我们观察到的宇宙的能量尺度很低,因此除了有关恢复经典能量条件的兼容性问题外,我们不必担心这些高能的抗粒子。然而,在量子重力量表上,这些抗疾病在取消引力异常以及其他可能出现的量子异常中起着至关重要的作用。
We introduce a special class of bimetric theories of quantized fields with preserved classical energy conditions. More precisely, we describe the missing anti-particles in our visible universe as being trapped in a spacetime patch with different metric such as the de-Sitter spacetime and negative energies. In order to stabilize these anti-states, time must go in the opposite direction to our visible universe, in agreement with the Feynman-Stückelberg interpretation of antiparticles. Since the energy scale of our observed universe is low, we do not need to worry about these highly energetic anti-particles except for compatibility issues regarding the restoration of classical energy conditions. However, at the quantum gravity scale, these anti-states play a crucial role in the cancellation of gravitational anomalies, along with other possible quantum anomalies that may emerge.