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Superconducting antenna concept for gravitational waves
A. Gulian
*
, J. Foreman
, V. Nikoghosyan
,
S. Nussinov
, L. Sica
, J. Tollaksen
*
Corresponding author for this work
School of Physics and Astronomy
Chapman University
Chapman University
National Academy of Sciences of the Republic of Armenia
Research output
:
Contribution to journal
›
Conference article
›
peer-review
1
Scopus citations
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Keyphrases
Gravitational Waves
100%
Antenna
100%
Coulomb Blockade
40%
Spaghetti
40%
High Sensitivity
20%
Superconductor
20%
Interferometer
20%
Gravitational Wave Detectors
20%
Crab Nebula
20%
Charge Carriers
20%
Gravitational Radiation
20%
Direction Selectivity
20%
Pulsars
20%
Manufacturing Technology
20%
Cooper Pairs
20%
Penetration Length
20%
Coulomb Force
20%
Charge Neutrality
20%
London Penetration Depth
20%
Size Selectivity
20%
Output Current
20%
Electromagnetic Force
20%
Superconducting Materials
20%
Thin Wire
20%
Magnetic Shielding
20%
Compact Antenna
20%
Superconducting Electronics
20%
Gradiometry
20%
Cryogenic Cooling
20%
Tidal Action
20%
Physics
Gravitational Wave
100%
Antenna
100%
Crab Nebula
16%
Selectivity
16%
Cryogenic Cooling
16%
Magnetic Shielding
16%
Pulsar
16%
Engineering
Antenna
100%
Coulomb Blockade
33%
Directional
16%
Penetration Depth
16%
Manufacturing Engineering
16%
Coulomb Force
16%
Current Output
16%
Cryogenic Cooling
16%
Superconductor
16%
Charge Carrier
16%
Material Science
Antenna
100%
Superconducting Material
33%
Interferometer
16%
Charge Carrier
16%