论文标题

关于Weyl颗粒的显着特性

On the remarkable properties of Weyl particles

论文作者

Tsigaridas, Georgios N., Kechriniotis, Aristides I., Tsonos, Christos A., Delibasis, Konstantinos K.

论文摘要

在这项工作中,我们表明Weyl颗粒可以在零电磁场中的不同状态存在,或者是自由颗粒,也可以在由具有质量尺寸的参数所描述的局部状态存在。我们还计算了应应用的电磁场,以便以所需的速率修改Weyl颗粒的定位。结果表明它们是简单的电场,可以轻松地实验实现。因此,在固态物理学的框架或在激光物理框架的框架内,使用激光束捕获的离子,在支持这些颗粒的某些材料中的定位也可以进行实验研究。此外,一个特别重要的说法是,根据爱因斯坦的一般相对性的野外方程,颗粒能量的定位会导致引力质量的产生。此外,如果颗粒的能量和定位超过临界水平,也可以创建微小的黑洞,这是宇宙暗物质的潜在候选者。

In this work we show that Weyl particles can exist at different states in zero electromagnetic field, either as free particles, or at localized states described by a parameter with dimensions of mass. We also calculate the electromagnetic fields that should be applied in order to modify the localization of Weyl particles at a desired rate. It is shown that they are simple electric fields, which can be easily implemented experimentally. Consequently, the localization of Weyl particles in certain materials supporting these particles could also be studied experimentally, in the framework of solid-state physics or in the framework of laser physics, using ions trapped by laser beams. In addition, a particularly important remark is that the localization of the energy of the particles can lead to the generation of gravitational mass, according to Einstein's field equations of general relativity. Furthermore, in the case that the energy and localization of the particles exceeds a critical level, tiny black holes could also be created, potential candidates for the dark matter of the universe.

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