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High Index SMES Device for Gravitomagnetic Field Generation
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作者 gary v. stephenson 《Journal of High Energy Physics, Gravitation and Cosmology》 2021年第2期367-376,共10页
A method is described for creating a measurable unbalanced gravitational acceleration using a gravitomagnetic field surrounding a superconducting toroid as described by Forward (1962). An experimental Superconducting ... A method is described for creating a measurable unbalanced gravitational acceleration using a gravitomagnetic field surrounding a superconducting toroid as described by Forward (1962). An experimental Superconducting Magnetic Energy Storage (SMES) toroid configuration of wound superconducting nanowire is proposed to create a measurable acceleration field along the axis of symmetry, providing experimental confirmation of the additive nature of a Lense-Thirring derived gravitomagnetic field. In the present paper, gravitational coupling enhancement of this effect is explored using a high index or high permittivity material, as predicted by Sarfatti (2020) using his modification to Einstein’s General Relativity Field Equations for gravitational coupling in matter. 展开更多
关键词 GRAVITATIONAL Gravitomagnetic Lense-Thirring Superconducting Magnetic Energy Storage SMES NANORODS NANOWIRES Super Dielectric Materials SDM Super Capacitors High Permittivity Gravitomagnetic Permeability Gravitational Coupling
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Extended Cases of Laboratory Generated Gravitomagnetic Field Measurement Devices
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作者 gary v. stephenson William Rieken Atit Bhargava 《Journal of High Energy Physics, Gravitation and Cosmology》 2019年第2期375-394,共20页
A method is described for creating a measurable unbalanced gravitational acceleration using a gravitomagnetic field surrounding a superconducting toroid. A gravitomagnetic toroid for unbalanced force production has be... A method is described for creating a measurable unbalanced gravitational acceleration using a gravitomagnetic field surrounding a superconducting toroid. A gravitomagnetic toroid for unbalanced force production has been experimentally realized as quite impractical. However recent advances in nanorod superconducting wire technology has enabled a new class of SMES devices operating at current densities and magnetic field strengths sufficient to develop measurable gravitomagnetic fields, while still maintaining mechanical integrity. It is proposed that an experimental SMES toroid configuration uses an absolute quantum gravimeter to measure acceleration fields along the axis of symmetry of a toroidal coil, thus providing experimental confirmation of the additive nature of the gravitomagnetic fields, as well as the production of a linear component of the overall acceleration field. In the present paper relativistic enhancement of this effect is also explored, as well as alternating current (AC) operations of the superconducting toroid to create gravitational waves. Lorentz force concerns are also addressed in Appendix. 展开更多
关键词 GRAVITATIONAL Gravitomagnetic Lense-Thirring SUPERCONDUCTING Magnetic Energy Storage SMES NANORODS NANOWIRES
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