Angle-dependent electron spin resonance of YbRhSi measured with planar microwave resonators and in-situ rotation
arXiv:1711.05759 · doi:10.1016/j.physb.2017.10.046
Abstract
We present a new experimental approach to investigate the magnetic properties of the anisotropic heavy-fermion system YbRhSi as a function of crystallographic orientation. Angle-dependent electron spin resonance (ESR) measurements are performed at a low temperature of 1.6 K and at an ESR frequency of 4.4 GHz utilizing a superconducting planar microwave resonator in a He-cryostat in combination with in-situ sample rotation. The obtained ESR g-factor of YbRhSi as a function of the crystallographic angle is consistent with results of previous measurements using conventional ESR spectrometers at higher frequencies and fields. Perspectives to implement this experimental approach into a dilution refrigerator and to reach the magnetically ordered phase of YbRhSi are discussed.
12 pages
References in corpus (7)
- Quantum Criticality in Heavy Fermion Metals
- Coplanar Waveguide Resonators for Circuit Quantum Electrodynamics
- Observing electron spin resonance between 0.1 and 67 GHz at temperatures between 50 mK and 300 K using broadband metallic coplanar waveguides
- Microwave spectroscopy on heavy-fermion systems: probing the dynamics of charges and magnetic moments
- Evolution of the Kondo state of YbRh2Si2 probed by high field ESR
- Microwave conductivity of heavy fermions in UPd2Al3
- Metallic coplanar resonators optimized for low-temperature measurements