DEVICES FOR THE DIRECTIONAL EMISSION AND RECEPTION OF GRAVITATIONAL WAVES

André Füzfa (Inventor)

Research output: Patent

Abstract

The present invention relates to electromagnetic devices 1, 21 and associated methods for the directional emission and the detection of gravitational waves. The gravitational wave generating device 1 consists of a cavity 4 carrying electromagnetic waves, which is immersed into an external static magnetic field appropriately oriented for boosting the emission of gravitational waves. It is possible to detect the generated gravitational waves, first through the related energy loss in the generating device 1, and second through the electromagnetic fields that are remotely induced in a gravitational wave detecting device 21. This last device 21 comprises an electromagnet 23 producing a magnetic field which interacts with the incoming gravitational waves in such a way that a magnetic energy is accumulating in a detection region 24 defined by the electromagnet 23.

Original languageEnglish
Patent numberWO2019129745
IPCH02N 11/ 00 A I
Priority date27/12/17
Publication statusPublished - 4 Jul 2019

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gravitational waves
electromagnets
inventions
magnetic fields
electromagnetic radiation
electromagnetic fields
energy dissipation
electromagnetism
cavities
energy

Cite this

Füzfa, A. (2019). IPC No. H02N 11/ 00 A I. DEVICES FOR THE DIRECTIONAL EMISSION AND RECEPTION OF GRAVITATIONAL WAVES. (Patent No. WO2019129745).
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Füzfa, A 2019, DEVICES FOR THE DIRECTIONAL EMISSION AND RECEPTION OF GRAVITATIONAL WAVES, Patent No. WO2019129745, IPC No. H02N 11/ 00 A I.

DEVICES FOR THE DIRECTIONAL EMISSION AND RECEPTION OF GRAVITATIONAL WAVES. / Füzfa, André (Inventor).

IPC No.: H02N 11/ 00 A I. Patent No.: WO2019129745.

Research output: Patent

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AB - The present invention relates to electromagnetic devices 1, 21 and associated methods for the directional emission and the detection of gravitational waves. The gravitational wave generating device 1 consists of a cavity 4 carrying electromagnetic waves, which is immersed into an external static magnetic field appropriately oriented for boosting the emission of gravitational waves. It is possible to detect the generated gravitational waves, first through the related energy loss in the generating device 1, and second through the electromagnetic fields that are remotely induced in a gravitational wave detecting device 21. This last device 21 comprises an electromagnet 23 producing a magnetic field which interacts with the incoming gravitational waves in such a way that a magnetic energy is accumulating in a detection region 24 defined by the electromagnet 23.

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