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Kategorie szczegółowe BISAC

First Order Phase Transitions of Magnetic Materials: Broad and Interrupted Transitions

ISBN-13: 9781498786256 / Angielski / Twarda / 2017 / 155 str.

Praveen Chaddah
First Order Phase Transitions of Magnetic Materials: Broad and Interrupted Transitions Praveen Chaddah 9781498786256 CRC Press - książkaWidoczna okładka, to zdjęcie poglądowe, a rzeczywista szata graficzna może różnić się od prezentowanej.

First Order Phase Transitions of Magnetic Materials: Broad and Interrupted Transitions

ISBN-13: 9781498786256 / Angielski / Twarda / 2017 / 155 str.

Praveen Chaddah
cena 563,24
(netto: 536,42 VAT:  5%)

Najniższa cena z 30 dni: 528,93
Termin realizacji zamówienia:
ok. 22 dni roboczych.

Darmowa dostawa!

This book discusses the concept of kinetic arrest at a certain temperature, with this temperature being dependent on the second control variable (magnetic field, or pressure). It discusses interesting manifestations of this phenomenon when the 1st order transition is broadened, i.e. occurs over a finite range of temperatures.

Kategorie:
Nauka, Fizyka
Kategorie BISAC:
Science > Physics - Condensed Matter
Technology & Engineering > Materials Science - General
Science > Chemia
Wydawca:
CRC Press
Język:
Angielski
ISBN-13:
9781498786256
Rok wydania:
2017
Ilość stron:
155
Oprawa:
Twarda
Wolumenów:
01
Dodatkowe informacje:
Bibliografia
Wydanie ilustrowane
Pełna wersja (unabridged)

Praveen Chaddah joined BARC through their Training School, in 1973. His Ph D work involved setting up a Compton Profile Spectrometer with a γ-ray source (the 1st in India) for electron momentum density measurements. His work focused on electron states in structurally disordered materials, and on electron correlation effects. As a post-doc at University of Illinois at Urbana- Champaign, he initiated measurements of nuclear momentum densities in the quantum solid 4He, using the spallation neutron source IPNS at Argonne. Dr Chaddah also worked on correlating the superconducting and martensitic transitions in A-15 superconductors. He worked on the development of superconducting magnets and of multifilamentary NbTi wires at BARC during 1982-87, and later made important contributions to the development and extension of Bean's Critical State model for the high TC superconductors. He reformulated this as a 'minimum flux-change' hypothesis, and contributed to its application to sample-shapes having finite demagnetization factor. He then worked on 1st order phase transitions in vortex-matter in superconductors, as also in magnetic materials. His recent emphasis has been on understanding metastabilities associated with supercooling and superheating, as also those associated with glass-like arrest of kinetics. His work showing tunability of coexisting phases in halfdoped manganites by varying the cooling field, was followed up on many materials exhibiting magnetic field induced first order transitions. This introduced the idea of “kinetic arrest” as a broad first order transition that is interrupted before completion. He developed the protocol CHUF (cooling and heating in unequal fields) that has provided rather visual evidence of kinetic arrest resulting in a glass-like arrested state. The observation of such behavior across magnetic 1st order transitions in various magnetic materials, where diffusive motions are not apparent, may lead to newer understanding of what causes glasses to form. Praveen Chaddah received the INSA Young Scientist medal in 1978, and the MRSI -ICSC Prize for Superconductivity in 1993. He is a Fellow of the Indian National Science Academy, a Fellow of the Indian Academy of Sciences, and also a Fellow of the National Academy of Sciences of India. He is also an elected Member of the Asia Pacific Academy of Materials. He has authored over 200 research papers. He was the Director of the UGC-DAE Consortium for Scientific Research for over eight years, where he established internationally competitive facilities for experimental research that were open to researchers from universities across India. He retired from the Department of Atomic Energy in December 2013.



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