English

Dimensional crossover in the quasi-one-dimensional superconductor Tl$_2$Mo$_6$Se$_6$

Superconductivity 2018-08-22 v2

Abstract

Long-range order in quasi-one-dimensional (q1D) arrays of superconducting nanowires is established via a dimensional crossover from a fluctuating 1D regime to a phase-coherent 3D ground state. If a homogeneous crystalline superconductor exhibits sufficiently high uniaxial anisotropy, a similar 1D\rightarrow3D crossover has been predicted to occur, provided that single-particle hopping transverse to the 1D axis is absent in the normal state. Here we present magnetic penetration depth and electrical transport data in single crystals of q1D Tl2_2Mo6_6Se6_6, which reveal a 1D\rightarrow3D superconducting dimensional crossover. Both experimental techniques uncover multiple energy scales within the superconducting transition, which describe a sequence of fluctuating regimes. As the temperature is reduced below Tons=T_{ons}=~6.7~K, 1D pairing fluctuations are replaced by 1D phase slips below TpT_p\sim~5.9~K. These give way to 3D phase fluctuations below Tab=T_{ab}=~4.9~K, prior to dimensional crossover at Tx2T_{x2}\sim~4.4~K. The electrical resistivity below TabT_{ab} is quantitatively consistent with the establishment of phase coherence through gradual binding of Josephson vortex strings to form 3D loops. An anomalously low superfluid density persist down to \sim3~K before rising steeply --- in agreement with a theoretical model for crossovers in q1D superconductors, and suggesting that a small population of unbound, weakly-pinned vortices survives below the crossover. The observation of a dimensional crossover within the superconducting state has important consequences for the low-temperature normal state in Tl2_2Mo6_6Se6_6 and similar q1D metals, which may exhibit one-dimensional behavior over far greater temperature ranges than band structure calculations suggest.

Keywords

Cite

@article{arxiv.1710.00292,
  title  = {Dimensional crossover in the quasi-one-dimensional superconductor Tl$_2$Mo$_6$Se$_6$},
  author = {S. Mitra and A. P. Petrović and D. Salloum and P. Gougeon and M. Potel and Jian-Xin Zhu and C. Panagopoulos and Elbert E. M. Chia},
  journal= {arXiv preprint arXiv:1710.00292},
  year   = {2018}
}