Unconventional superconductors are characterized by various competing ordering phenomena in the normal state, such as antiferromagnetism, charge order, orbital order or nematicity. According to a widespread view, antiferromagnetic fluctuations are the dominant ordering phenomenon in cuprates and Fe based superconductors and are responsible for electron pairing. In contrast, charge order is believed to be subdominant and compete with superconductivity. Here, we argue that fluctuating charge order in the (0,[pi]) direction is a feature shared by the cuprates and the Fe based superconductors alike. Recent data and theoretical models suggest that superconductivity is brought about by charge order excitations independently from spin fluctuations...
We investigate the physical origin of unconventional low-energy excitations in cuprate superconduct...
To seek the high-$T_c$ pairing mechanism, many scientists have focused on the mysterious spontaneous...
We investigate the physical origin of unconventional low-energy excitations in cuprate superconduct...
Unconventional superconductors are characterized by various competing ordering phenomena in the norm...
16 pages, 17 figuresWe review the recent developments in the field of cuprate superconductors with t...
16 pages, 17 figuresWe review the recent developments in the field of cuprate superconductors with t...
Unconventional superconductivity (SC) is said to occur when Cooper pair formation is dominated by re...
Unconventional superconductivity (SC) is said to occur when Cooper pair formation is dominated by re...
This thesis considers various aspects of the interplay between superconductivity and magnetism in st...
We describe two-dimensional quantum spin fluctuations in a superconducting Abrikosov flux lattice in...
The pseudogap regime of high-temperature cuprates harbours diverse manifestations of electronic orde...
Magnetism and nematic order are the two nonsuperconducting orders observed in iron-based superconduc...
We investigate the physical origin of unconventional low-energy excitations in cuprate superconducto...
High-temperature superconductivity, with transition temperatures up to ≈134 K at ambient pressure, o...
High-temperature superconductivity, with transition temperatures up to ≈134 K at ambient pressure, o...
We investigate the physical origin of unconventional low-energy excitations in cuprate superconduct...
To seek the high-$T_c$ pairing mechanism, many scientists have focused on the mysterious spontaneous...
We investigate the physical origin of unconventional low-energy excitations in cuprate superconduct...
Unconventional superconductors are characterized by various competing ordering phenomena in the norm...
16 pages, 17 figuresWe review the recent developments in the field of cuprate superconductors with t...
16 pages, 17 figuresWe review the recent developments in the field of cuprate superconductors with t...
Unconventional superconductivity (SC) is said to occur when Cooper pair formation is dominated by re...
Unconventional superconductivity (SC) is said to occur when Cooper pair formation is dominated by re...
This thesis considers various aspects of the interplay between superconductivity and magnetism in st...
We describe two-dimensional quantum spin fluctuations in a superconducting Abrikosov flux lattice in...
The pseudogap regime of high-temperature cuprates harbours diverse manifestations of electronic orde...
Magnetism and nematic order are the two nonsuperconducting orders observed in iron-based superconduc...
We investigate the physical origin of unconventional low-energy excitations in cuprate superconducto...
High-temperature superconductivity, with transition temperatures up to ≈134 K at ambient pressure, o...
High-temperature superconductivity, with transition temperatures up to ≈134 K at ambient pressure, o...
We investigate the physical origin of unconventional low-energy excitations in cuprate superconduct...
To seek the high-$T_c$ pairing mechanism, many scientists have focused on the mysterious spontaneous...
We investigate the physical origin of unconventional low-energy excitations in cuprate superconduct...