Evidence of zero point fluctuation of vortices in a very weakly pinned a-MoGe thin film
arXiv:2102.12996 · doi:10.1103/PhysRevB.103.214512
Abstract
In a Type II superconductor, the vortex core behaves like a normal metal. Consequently, the single-particle density of states in the vortex core of a conventional Type II superconductor remains either flat or (for very clean single crystals) exhibits a peak at zero bias due to the formation of Caroli-de Gennes-Matricon bound state inside the core. Here we report an unusual observation from scanning tunneling spectroscopy measurements in a weakly pinned thin film of the conventional s-wave superconductor a-MoGe, namely, that a soft gap in the local density of states continues to exist even at the center of the vortex core. We ascribe this observation to rapid fluctuation of vortices about their mean position that blurs the boundary between the gapless normal core and the gapped superconducting region outside. Analyzing the data as a function of magnetic field we show that the variation of fluctuation amplitude as a function of magnetic field is consistent with quantum zero-point motion of vortices.
arXiv admin note: substantial text overlap with arXiv:1905.01045
References in corpus (5)
- Vortex Imaging in the pi-Band of Magnesium Diboride
- Destruction of superconductivity through phase fluctuations in ultrathin a-MoGe films
- Extreme sensitivity of the vortex state in a-MoGe films to radio-frequency electromagnetic perturbation
- Detecting the quantum zero-point motion of vortices in the cuprate superconductors
- Influence of the quantum zero-point motion of a vortex on the electronic spectra of s-wave superconductors
Cited by in corpus (10)
- Structure and dynamics of a pinned vortex liquid in superconducting a-Re_xZr (x ~ 6) thin film
- Magnetic field induced transition from a vortex liquid to Bose metal in ultrathin a-MoGe thin film
- New paradigm for a disordered superconductor in a magnetic field
- Inverse melting and re-entrant transformations of the vortex lattice in amorphous Re6Zr thin film
- Low frequency electrodynamics in the mixed state of superconducting NbN and a-MoGe films using two-coil mutual inductance technique
- Transient vortex dynamics and evolution of Bose metal from a 2D superconductor on MoS
- Quantum Coherence in Superconducting Vortex States
- Non-linear vortex dynamics in the mixed state of superconducting a-MoGe and NbN thin films using low-frequency two-coil mutual inductance technique
- Scanning tunneling spectroscopy of superconducting nitridized aluminum thin films
- Vortex Pinning in Niobium covered by a thin polycrystalline Gold