Coles

Loading Inventory...
Non-universal Superconducting Gap Structure Iron-pnictides Revealed By Magnetic Penetration Depth MeasurementsNon-universal Superconducting Gap Structure Iron-pnictides Revealed By Magnetic Penetration Depth MeasurementsNon-universal Superconducting Gap Structure Iron-pnictides Revealed By Magnetic Penetration Depth Measurements

Non-universal Superconducting Gap Structure Iron-pnictides Revealed By Magnetic Penetration Depth Measurements in Ottawa, ON

By None

Current price: $160.95
Visit retailer's website
Non-universal Superconducting Gap Structure Iron-pnictides Revealed By Magnetic Penetration Depth Measurements

By None

Non-universal Superconducting Gap Structure Iron-pnictides Revealed By Magnetic Penetration Depth Measurements in Ottawa, ON

Current price: $160.95
Loading Inventory...

Size: Hardcover

Visit retailer's website
*Product information may vary - to confirm product availability, pricing, shipping and return information please contact Coles
In this book the author presents two important findings revealed by high-precision magnetic penetration depth measurements in iron-based superconductors which exhibit high-transition temperature superconductivity up to 55 K: one is the fact that the superconducting gap structure in iron-based superconductors depends on a detailed electronic structure of individual materials, and the other is the first strong evidence for the presence of a quantum critical point (QCP) beneath the superconducting dome of iron-based superconductors. The magnetic penetration depth is a powerful probe to elucidate the superconducting gap structure which is intimately related to the pairing mechanism of superconductivity. The author discusses the possible gap structure of individual iron-based superconductors by comparing the gap structure obtained from the penetration depth measurements with theoretical predictions, indicating that the non-universal superconducting gap structure in iron-pnictides can be interpreted in the framework of A 1g symmetry. This result imposes a strong constraint on the pairing mechanism of iron-based superconductors. The author also shows clear evidence for the quantum criticality inside the superconducting dome from the absolute zero-temperature penetration depth measurements as a function of chemical composition. A sharp peak of the penetration depth at a certain composition demonstrates pronounced quantum fluctuations associated with the QCP, which separates two distinct superconducting phases. This gives the first convincing signature of a second-order quantum phase transition deep inside the superconducting dome, whichmay address a key question on the general phase diagram of unconventional superconductivity in the vicinity of a QCP.
In this book the author presents two important findings revealed by high-precision magnetic penetration depth measurements in iron-based superconductors which exhibit high-transition temperature superconductivity up to 55 K: one is the fact that the superconducting gap structure in iron-based superconductors depends on a detailed electronic structure of individual materials, and the other is the first strong evidence for the presence of a quantum critical point (QCP) beneath the superconducting dome of iron-based superconductors. The magnetic penetration depth is a powerful probe to elucidate the superconducting gap structure which is intimately related to the pairing mechanism of superconductivity. The author discusses the possible gap structure of individual iron-based superconductors by comparing the gap structure obtained from the penetration depth measurements with theoretical predictions, indicating that the non-universal superconducting gap structure in iron-pnictides can be interpreted in the framework of A 1g symmetry. This result imposes a strong constraint on the pairing mechanism of iron-based superconductors. The author also shows clear evidence for the quantum criticality inside the superconducting dome from the absolute zero-temperature penetration depth measurements as a function of chemical composition. A sharp peak of the penetration depth at a certain composition demonstrates pronounced quantum fluctuations associated with the QCP, which separates two distinct superconducting phases. This gives the first convincing signature of a second-order quantum phase transition deep inside the superconducting dome, whichmay address a key question on the general phase diagram of unconventional superconductivity in the vicinity of a QCP.

More About Coles at Bayshore Shopping Centre

Coles is renowned for its outstanding customer service and great selection of books. Along with the vast array of magazines, stationary, audio-books, children's literature, fiction, non-fiction and reference books, you can find accessories to make your reading experience more pleasurable. We can recommend the very best in reading today. We will help you search our titles for exactly what you need, and if we do not have it in stock, we will order it for you.

100 Bayshore Dr, Nepean, ON K2B 8C1, Canada

Find Coles at Bayshore Shopping Centre in Ottawa, ON

Visit Coles at Bayshore Shopping Centre in Ottawa, ON
Powered by Adeptmind