Topological semimetals are three dimensional materials with symmetry-protected massless bulk excitations. As a special case, Weyl nodal-line semimetals are realized in materials having either no inversion or broken time-reversal symmetry and feature bulk nodal lines. The 111-family, including LaNiSi, LaPtSi and LaPtGe materials (all lacking inversion symmetry), belongs to this class. Here, by combining muon-spin rotation and relaxation with thermodynamic measurements, we find that these materials exhibit a fully-gapped superconducting ground state, while spontaneously breaking time-reversal symmetry at the superconducting transition. Since time-reversal symmetry is essential for protecting the normal-state topology, its breaking upon enteri...
In all known fermionic superfluids, Cooper pairs are composed of spin-1/2 quasi-particles that pair ...
Geometric properties of electron states in crystalline solids lead to a topological classification o...
The Weyl semimetal MoTe₂ offers a rare opportunity to study the interplay between Weyl physics and s...
Topological semimetals are three dimensional materials with symmetry-protected massless bulk excitat...
Crystalline symmetry is a defining factor of the electronic band topology in solids, where many-body...
Nodal-line semimetals are topologically nontrivial states of matter featuring band crossings along a...
The realization of Dirac and Weyl physics in solids has made topological materials one of the main f...
Abstract After the discovery of topological insulators (TIs), it has come to be widely recognized th...
Topological semimetals (TSMs) including Weyl semimetals and nodal-line semimetals are expected to op...
We propose that doped Weyl semimetals with {time-reversal and certain crystalline symmetries} are na...
The coexistence of non-trivial topology and superconductivity in a material may induce a novel physi...
Topological Weyl semimetals (TWSs) are exotic crystals possessing emergent relativistic Weyl fermion...
Symmetry breaking in topological matter has become in recent years a key concept in condensed matter...
In all known fermionic superfluids, Cooper pairs are composed of spin-1/2 quasi-particles that pair ...
Recently, unconventional superconductivity having a zero-bias conductance peak is reported in doped ...
In all known fermionic superfluids, Cooper pairs are composed of spin-1/2 quasi-particles that pair ...
Geometric properties of electron states in crystalline solids lead to a topological classification o...
The Weyl semimetal MoTe₂ offers a rare opportunity to study the interplay between Weyl physics and s...
Topological semimetals are three dimensional materials with symmetry-protected massless bulk excitat...
Crystalline symmetry is a defining factor of the electronic band topology in solids, where many-body...
Nodal-line semimetals are topologically nontrivial states of matter featuring band crossings along a...
The realization of Dirac and Weyl physics in solids has made topological materials one of the main f...
Abstract After the discovery of topological insulators (TIs), it has come to be widely recognized th...
Topological semimetals (TSMs) including Weyl semimetals and nodal-line semimetals are expected to op...
We propose that doped Weyl semimetals with {time-reversal and certain crystalline symmetries} are na...
The coexistence of non-trivial topology and superconductivity in a material may induce a novel physi...
Topological Weyl semimetals (TWSs) are exotic crystals possessing emergent relativistic Weyl fermion...
Symmetry breaking in topological matter has become in recent years a key concept in condensed matter...
In all known fermionic superfluids, Cooper pairs are composed of spin-1/2 quasi-particles that pair ...
Recently, unconventional superconductivity having a zero-bias conductance peak is reported in doped ...
In all known fermionic superfluids, Cooper pairs are composed of spin-1/2 quasi-particles that pair ...
Geometric properties of electron states in crystalline solids lead to a topological classification o...
The Weyl semimetal MoTe₂ offers a rare opportunity to study the interplay between Weyl physics and s...