In this book, hybrid systems based on yttrium-iron-garnet (YIG), three dimensional microwave cavity resonators, and superconducting transmon qubits, are investigated by continuous wave and pulsed microwave spectroscopy. Limitations to the magnetic linewidth in the quantum regime are identified and coherent exchange between a magnon and a superconducting qubit are demonstrated. Finally, a first step towards a strongly coupled hybrid system containing all three components is demonstrated
Extensive efforts have been expended in developing hybrid quantum systems to overcome the short cohe...
Ultra-strong coupling between inverse anapole resonator (IAR) and YIG crystal was studied. FEM simul...
Studies on spin waves (magnons) formed by collective electron spin excitations in magnetic materials...
In this book, hybrid systems based on yttrium-iron-garnet (YIG), three dimensional microwave cavity ...
Coupled microwave photon-magnon hybrid systems offer promising applications by harnessing various ma...
The spin resonance of electrons can be coupled to a microwave cavity mode to obtain a photon-magnon ...
AbstractThe techniques of microwave quantum optics are applied to collective spin excitations in a m...
The critical step for future quantum industry demands realization of efficient information exchange ...
This thesis reports on three recent experimental studies of microwave magnons in yttrium iron garnet...
We report measurements made at millikelvin temperatures of a superconducting coplanar waveguide reso...
Quantum technology has made tremendous strides over the past two decades with remarkable advances in...
As various platforms are being developed in quantum information science, measures to interconnect di...
Circuit quantum electrodynamics has received an increasing amount of attention over the last decade ...
International audienceThe rise of quantum information science has provided new perspectives on quant...
Hybrid systems combining magnons and superconducting quantum circuits have attracted increasing inte...
Extensive efforts have been expended in developing hybrid quantum systems to overcome the short cohe...
Ultra-strong coupling between inverse anapole resonator (IAR) and YIG crystal was studied. FEM simul...
Studies on spin waves (magnons) formed by collective electron spin excitations in magnetic materials...
In this book, hybrid systems based on yttrium-iron-garnet (YIG), three dimensional microwave cavity ...
Coupled microwave photon-magnon hybrid systems offer promising applications by harnessing various ma...
The spin resonance of electrons can be coupled to a microwave cavity mode to obtain a photon-magnon ...
AbstractThe techniques of microwave quantum optics are applied to collective spin excitations in a m...
The critical step for future quantum industry demands realization of efficient information exchange ...
This thesis reports on three recent experimental studies of microwave magnons in yttrium iron garnet...
We report measurements made at millikelvin temperatures of a superconducting coplanar waveguide reso...
Quantum technology has made tremendous strides over the past two decades with remarkable advances in...
As various platforms are being developed in quantum information science, measures to interconnect di...
Circuit quantum electrodynamics has received an increasing amount of attention over the last decade ...
International audienceThe rise of quantum information science has provided new perspectives on quant...
Hybrid systems combining magnons and superconducting quantum circuits have attracted increasing inte...
Extensive efforts have been expended in developing hybrid quantum systems to overcome the short cohe...
Ultra-strong coupling between inverse anapole resonator (IAR) and YIG crystal was studied. FEM simul...
Studies on spin waves (magnons) formed by collective electron spin excitations in magnetic materials...