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    • 2. 发明授权
    • Method and apparatus to facilitate superconductivity by exciting a
material at its resonant frequency of molecular vibration
    • 通过以其分子振动的共振频率激发材料来促进超导性的方法和装置
    • US5340795A
    • 1994-08-23
    • US888056
    • 1992-05-22
    • Daniel A. Boehnen
    • Daniel A. Boehnen
    • H01L39/00H01B12/00H01L39/24
    • H01L39/00Y10S505/727Y10S505/881Y10S505/884
    • Improved methods, apparatus, and compositions for achieving superconductivity are disclosed. The methods and apparatus are based upon applying an external driving force, i.e., either an electrical current or a magnetic field, at a predetermined frequency. The predetermined frequency is chosen to equal one or more of the resonant frequencies of the molecular vibration of the atoms which provide conductivity to the material. The compositions of the invention require a continuous bridge or network of electrically compatible atoms between the opposite poles of the electrical pathway. Another aspect of the invention provides a method for determining the resonant frequency of molecular vibration, i.e., the frequency at which the external driving force should be applied. In this aspect of the invention, the composition is exposed to one or more sources of electromagnetic energy which radiate at known frequencies. The response of the composition to the various frequencies of radiation is measured and compared. The frequency at which the material exhibits the sharply increased response is designated a resonant frequency of the material.
    • 公开了用于实现超导性的改进的方法,装置和组合物。 所述方法和装置基于以预定频率施加外部驱动力,即电流或磁场。 预定频率被选择为等于对材料提供导电性的原子的分子振动的一个或多个谐振频率。 本发明的组合物需要在电通路的相对极之间的电相容原子的连续桥或网络。 本发明的另一方面提供了一种用于确定分子振动的共振频率的方法,即施加外部驱动力的频率。 在本发明的这个方面,该组合物暴露于以已知频率辐射的一个或多个电磁能源。 测量和比较组合物对各种辐射频率的响应。 材料表现出急剧增加的响应的频率被指定为材料的共振频率。