Slow propagation line-based superconducting devices for quantum technology
Doctoral thesis, 2016
superconducting transmission line
electron spin resonance
parametric amplifier
near field scanning microwave microscopy
tunable microstrip resonator
Author
Astghik Adamyan
Chalmers, Microtechnology and Nanoscience (MC2), Quantum Device Physics
Kinetic inductance as a microwave circuit design variable by multilayer fabrication
Superconductor Science and Technology,;Vol. 28(2015)
Journal article
A near-field scanning microwave microscope based on a superconducting resonator for low power measurements
Review of Scientific Instruments,;Vol. 84(2013)p. 023706-
Journal article
Superconducting microwave parametric amplifier based on a quasi-fractal slow propagation line
Journal of Applied Physics,;Vol. 119(2016)
Journal article
Tunable superconducting microstrip resonators
Applied Physics Letters,;Vol. 108(2016)
Journal article
Magnetic field resilient superconducting fractal resonators for coupling to free spins
Journal of Applied Physics,;Vol. 112(2012)p. 123905-
Journal article
Areas of Advance
Nanoscience and Nanotechnology
Subject Categories
Nano Technology
Condensed Matter Physics
ISBN
978-91-7597-413-2
Doktorsavhandlingar vid Chalmers tekniska högskola. Ny serie: 4094
Kollektorn (A423), Kemivagen 9, MC2, Chalmers University of Technology
Opponent: Prof. Antonello Andreone, Department of Physics, University of Naples Federico II, Italy