Novel Superfluids: Volume 2
Herausgeber: Bennemann, Karl-Heinz; Ketterson, John B.
Novel Superfluids: Volume 2
Herausgeber: Bennemann, Karl-Heinz; Ketterson, John B.
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Volume 2 of Novel Superfluids continues the presentation of recent results on superfluids, including novel metallic systems, superfluid liquids, and atomic/molecular gases of bosons and fermions.
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Volume 2 of Novel Superfluids continues the presentation of recent results on superfluids, including novel metallic systems, superfluid liquids, and atomic/molecular gases of bosons and fermions.
Produktdetails
- Produktdetails
- International Monographs on Ph
- Verlag: Oxford University Press, USA
- Seitenzahl: 576
- Erscheinungstermin: 27. Januar 2015
- Englisch
- Abmessung: 246mm x 191mm x 38mm
- Gewicht: 1556g
- ISBN-13: 9780198719267
- ISBN-10: 0198719264
- Artikelnr.: 47867629
- International Monographs on Ph
- Verlag: Oxford University Press, USA
- Seitenzahl: 576
- Erscheinungstermin: 27. Januar 2015
- Englisch
- Abmessung: 246mm x 191mm x 38mm
- Gewicht: 1556g
- ISBN-13: 9780198719267
- ISBN-10: 0198719264
- Artikelnr.: 47867629
K. H. Bennemann is Professor of Physics at the FU Berlin (1971-). He graduated from the University of Illinois at Urbana, where he worked with J. Bardeen. He has also been a research Sloan-fellow. He is internationally known in particular for research on magnetism, non-linear optics, superconductivity and ultrafast dynamics in condensed matter. J. B. Ketterson is Professor of Physics and Astronomy at Northwestern University (1974- ). He was earlier at Argonne National Laboratory (1962 - 1974). He received his PhD from the University of Chicago (1962) under Prof. A. W. Lawson. He specializes in condensed matter physics (electronic properties of metals, liquid helium, superconductivity, cold trapped gasses, magnetism, liquid crystals and Langmuir films, and non linear optics). Both authors are well known for their classic books on Superfluid He and Superconductivity.
* 12: K. H. Bennemann and J. B. Ketterson: Superfluidity: An overview
* 13: M. R. Norman: Unconventional superconductivity
* 14: K. H. Bennemann and J. B. Ketterson: Fe-based new superconductors
* 15: S. Maiti and A. V. Chubukov: Superconductivity from repulsive
interaction
* 16: C. Chin and N. Gemelke: Atomic Bose fluids in optical lattices
* 17: E. Duchon, Y. L. Loh, and N. Trivedi: Optical lattice emulators:
Bose and Fermi Hubbard models
* 18: M. Zwierlein: Superfluidity in ultracold atomic Fermi gases
* 19: M. Rontani and L. J. Sham: Coherent exciton transport in
semiconductors
* 20: O. Dzyapko, V. E. Demidov, S. O. Demokritov, G. A. Melkov, and A.
N. Slavin: Bose-Einstein condensation of magnons at room temperature:
kinetics thermodynamics, and coherence
* 21: D. Page, J. M. Lattimer, M. Prakash, and A. W. Steiner: Stellar
superfluids
* 22: A. Gezerlis, C.J. Pethick, and A. Schwenk: Pairing and
superfluidity of nucleons in neutron stars
* 13: M. R. Norman: Unconventional superconductivity
* 14: K. H. Bennemann and J. B. Ketterson: Fe-based new superconductors
* 15: S. Maiti and A. V. Chubukov: Superconductivity from repulsive
interaction
* 16: C. Chin and N. Gemelke: Atomic Bose fluids in optical lattices
* 17: E. Duchon, Y. L. Loh, and N. Trivedi: Optical lattice emulators:
Bose and Fermi Hubbard models
* 18: M. Zwierlein: Superfluidity in ultracold atomic Fermi gases
* 19: M. Rontani and L. J. Sham: Coherent exciton transport in
semiconductors
* 20: O. Dzyapko, V. E. Demidov, S. O. Demokritov, G. A. Melkov, and A.
N. Slavin: Bose-Einstein condensation of magnons at room temperature:
kinetics thermodynamics, and coherence
* 21: D. Page, J. M. Lattimer, M. Prakash, and A. W. Steiner: Stellar
superfluids
* 22: A. Gezerlis, C.J. Pethick, and A. Schwenk: Pairing and
superfluidity of nucleons in neutron stars
* 12: K. H. Bennemann and J. B. Ketterson: Superfluidity: An overview
* 13: M. R. Norman: Unconventional superconductivity
* 14: K. H. Bennemann and J. B. Ketterson: Fe-based new superconductors
* 15: S. Maiti and A. V. Chubukov: Superconductivity from repulsive
interaction
* 16: C. Chin and N. Gemelke: Atomic Bose fluids in optical lattices
* 17: E. Duchon, Y. L. Loh, and N. Trivedi: Optical lattice emulators:
Bose and Fermi Hubbard models
* 18: M. Zwierlein: Superfluidity in ultracold atomic Fermi gases
* 19: M. Rontani and L. J. Sham: Coherent exciton transport in
semiconductors
* 20: O. Dzyapko, V. E. Demidov, S. O. Demokritov, G. A. Melkov, and A.
N. Slavin: Bose-Einstein condensation of magnons at room temperature:
kinetics thermodynamics, and coherence
* 21: D. Page, J. M. Lattimer, M. Prakash, and A. W. Steiner: Stellar
superfluids
* 22: A. Gezerlis, C.J. Pethick, and A. Schwenk: Pairing and
superfluidity of nucleons in neutron stars
* 13: M. R. Norman: Unconventional superconductivity
* 14: K. H. Bennemann and J. B. Ketterson: Fe-based new superconductors
* 15: S. Maiti and A. V. Chubukov: Superconductivity from repulsive
interaction
* 16: C. Chin and N. Gemelke: Atomic Bose fluids in optical lattices
* 17: E. Duchon, Y. L. Loh, and N. Trivedi: Optical lattice emulators:
Bose and Fermi Hubbard models
* 18: M. Zwierlein: Superfluidity in ultracold atomic Fermi gases
* 19: M. Rontani and L. J. Sham: Coherent exciton transport in
semiconductors
* 20: O. Dzyapko, V. E. Demidov, S. O. Demokritov, G. A. Melkov, and A.
N. Slavin: Bose-Einstein condensation of magnons at room temperature:
kinetics thermodynamics, and coherence
* 21: D. Page, J. M. Lattimer, M. Prakash, and A. W. Steiner: Stellar
superfluids
* 22: A. Gezerlis, C.J. Pethick, and A. Schwenk: Pairing and
superfluidity of nucleons in neutron stars