Delicate Superconductivity in NaAlGe Single Crystal
arXiv:2206.06310 · doi:10.1088/1361-648X/ac9adf
Abstract
Nodal-line superconductor NaAlSi with a transition temperature () of 7 K has attracted considerable attention in recent years, whereas its Ge counterpart, NaAlGe, does not superconduct down to the lowest temperature regardless of their similar atomic and electrical structures. To tackle this enigma, we resort to the growth of NaAlGe single crystal and characterize its semimetallic ground state. Interestingly, when hole doped by oxidation, single-crystalline NaAlGe transforms from a semimetal to a superconductor ( 3.5 K) with zero resistivity and a diamagnetic shielding fraction over 100, but without a thermodynamic response in heat capacity. Continuous x-ray diffraction reveals a transient new structure with a larger axis, which is suggested to have arisen from the minor loss of Na and to be responsible for the emergence of the delicate superconductivity. Our findings resolve the controversies in NaAlSi and NaAlGe, while their similarities and differences provide an ideal opportunity to investigate a variety of exciting topological quantum states.
8 pages, 4 figures
References in corpus (9)
- Topological nodal line semimetals
- LiFeAs: An Intrinsic FeAs-based Superconductor with Tc = 18K
- Highly-robust reentrant superconductivity in CsV3Sb5 under pressure
- Competition of superconductivity and charge density wave in selective oxidized CsV3Sb5 thin flakes
- Discovery of two families of VSb-based compounds with V-kagome lattice
- Superconductivity in the Topological Nodal-line Semimetal NaAlSi
- Spectroscopic Evidence for Dirac Nodal Surfaces and Nodal Rings in Superconductor NaAlSi
- Evidence for multiband superconductivity and charge density waves in Ni-doped ZrTe
- Unusual Resistive Transitions in the Nodal-Line Semimetallic Superconductor NaAlSi