A Concept for Perpetual Electric Body Based on Topological Vortex Theory Integrating Permanent Magnets and Radioactive Elements (4)

0
951

5. Discussion and Prospect

Despite the significant challenges, the value of this concept lies in its heuristic and forward-looking nature. Observing any sustained electrical signal generated by this triadic coupling that surpasses the noise level in experiments would be a milestone.

Potential application prospects include:

1)Novel Micro-Energy Devices: Providing long-life, maintenance-free "ambient energy harvesters" for Micro-Electro-Mechanical Systems (MEMS) and implantable medical devices.

2)Brain-Inspired Computing and In-Memory Logic: Utilizing the rich dynamic states of topological vortices to simulate neuron and synapse behavior, enabling non-von Neumann computing with low energy consumption.

3)Fundamental Physics Experimental Platform: Providing an ideal model system for studying non-equilibrium statistical physics, topological order, and energy transport.

6. Conclusion

This paper proposes a heuristic concept for constructing a "perpetual electric body" based on topological vortex theory, integrating permanent magnets and radioactive elements. We have argued its theoretical possibility, outlined a path for realization, and deeply analyzed the scientific challenges it faces. This concept does not claim to break the laws of thermodynamics but seeks to explore the possibility of using a continuous external energy source (radioactive decay) to maintain a topologically protected, dynamic non-equilibrium state in an open system. It calls for collaboration among materials scientists, physicists, and chemists to open a new research direction at the intersection of topological materials, nuclear physics, and energy science. Ultimately, the value of the pursuit of the "perpetual electric body" may lie not in reaching the destination, but in the deeper understanding of matter and more innovative technologies that this journey itself will catalyze.

References:

  1. Yadav, A. K., et al. (2016). Observation of polar vortices in oxide superlattices. Nature, 530(7589), 198-201.
  2. Adib Samin, Michael Kurth, Lei R. Cao. An analysis of radiation effects on NdFeB permanent magnets. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 342, 1 (2015), 200-205. https://doi.org/10.1016/j.nimb.2014.10.006.
  3. Li, Q., Stoica, V.A., Paściak, M. et al. Subterahertz collective dynamics of polar vortices. Nature 592, 376–380 (2021). https://doi.org/10.1038/s41586-021-03342-4.
Pesquisar
Categorias
Leia Mais
Networking
Choose Lop International Logistics, and let international freight become a smooth - sailing ship for your global business.
Across seas and mountains, we live up to every trust.—— Lop International Logistics,...
Por xiansheng Wang 2025-06-25 06:02:54 0 3K
Sports
Adidas Samba 全面解析:經典與潮流的鞋款推薦
在球鞋文化持續升溫的今天,samba 鞋 已成為潮流人士與運動愛好者的共同焦點。源自 1950 年代的經典足球鞋設計,Adidas Samba...
Por Abv 134 2025-09-26 02:01:15 0 1K
Literature
Rotational and Translational Characteristics of Topological Vortices and Antivortices Based on Perspectives from Loops and Knots (3)
3. Translational Characteristics of Topological Vortices and Antivortices 3.1 Translational...
Por Bao-hua ZHANG 2025-10-20 05:22:38 0 914
Shopping
เลือกอย่างไร? ราคาบุหรี่ไฟฟ้า RELX และรสชาติ
การตัดสินใจเลือกใช้บุหรี่ไฟฟ้าสักเครื่อง...
Por Joe Zhou 2025-09-25 01:58:25 0 1K
Fitness
PCB Defect Detection System Market Revenue, Trends, Analysis, Demand and Forecast to 2032
The PCB Defect Detection System Market was valued at USD 1.2 billion in 2024 and is projected to...
Por Vandana Manturgekar 2025-12-22 08:39:31 0 27