The cooperation between theoretical and experimental investigations broke the record for the superconducting critical temperature T c in hydrogen sulfide at a high pressure at the end of 2014. Surprisingly, the material improved its highest T c by more than 30 K and showed conventional superconductivity, which can be explained by the Bardeen–Cooper–Schrieffer theory. Recent experimental works have gradually clarified the instability of the H2S molecule and the pathway to the high-T c phase with a three-dimensional conductive structure unlike high-T c superconductors thus far. In this review, the present progress on a sulfur hydride system is reported
Since the discovery of superconductivity at ~ 200 K in H3S, similar or higher transition temperature...
The search for high-temperature superconductivity is one of the research frontiers in physics. In th...
The search for high-temperature superconductivity is one of the research frontiers in physics. In th...
The cooperation between theoretical and experimental investigations broke the record for the superco...
Conventional superconductors are described well by the Bardeen – Cooper – Schrieffer (BCS) theory (1...
Conventional superconductors are described well by the Bardeen – Cooper – Schrieffer (BCS) theory (1...
The sulfur-hydrogen system is the first one in which superconductivity at temperatures over 200 K ha...
Due to its low atomic mass, hydrogen is the most promising element to search for hightemperature pho...
Hydrogen sulfide (H$_2$S) was studied by x-ray synchrotron diffraction and Raman spectroscopy up to ...
Due to its low atomic mass, hydrogen is the most promising element to search for hightemperature pho...
Hydrogen sulfide (H$_2$S) was studied by x-ray synchrotron diffraction and Raman spectroscopy up to ...
A superconductor is a material that can conduct electricity without resistance below a superconducti...
The search for high-temperature superconductivity is one of the research frontiers in physics. In th...
Since the discovery of superconductivity at ~ 200 K in H3S, similar or higher transition temperature...
Since the discovery of superconductivity at 200 K in H3S [1] similar or higher transition temperatur...
Since the discovery of superconductivity at ~ 200 K in H3S, similar or higher transition temperature...
The search for high-temperature superconductivity is one of the research frontiers in physics. In th...
The search for high-temperature superconductivity is one of the research frontiers in physics. In th...
The cooperation between theoretical and experimental investigations broke the record for the superco...
Conventional superconductors are described well by the Bardeen – Cooper – Schrieffer (BCS) theory (1...
Conventional superconductors are described well by the Bardeen – Cooper – Schrieffer (BCS) theory (1...
The sulfur-hydrogen system is the first one in which superconductivity at temperatures over 200 K ha...
Due to its low atomic mass, hydrogen is the most promising element to search for hightemperature pho...
Hydrogen sulfide (H$_2$S) was studied by x-ray synchrotron diffraction and Raman spectroscopy up to ...
Due to its low atomic mass, hydrogen is the most promising element to search for hightemperature pho...
Hydrogen sulfide (H$_2$S) was studied by x-ray synchrotron diffraction and Raman spectroscopy up to ...
A superconductor is a material that can conduct electricity without resistance below a superconducti...
The search for high-temperature superconductivity is one of the research frontiers in physics. In th...
Since the discovery of superconductivity at ~ 200 K in H3S, similar or higher transition temperature...
Since the discovery of superconductivity at 200 K in H3S [1] similar or higher transition temperatur...
Since the discovery of superconductivity at ~ 200 K in H3S, similar or higher transition temperature...
The search for high-temperature superconductivity is one of the research frontiers in physics. In th...
The search for high-temperature superconductivity is one of the research frontiers in physics. In th...