SUPERCONDUCTING STATES FROM SPIN FLUCTUATION MECHANISMS

SCHARNBERG K, Dahm T, ERDMENGER J (1994)
Physica B Condensed Matter 194-196: 1435-1436.

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Abstract
The exchange of antiferromagnetic spin fluctuations leads to highly anisotropic pairing interactions with attractive as well as repulsive contributions. Using these pairing interactions, the order parameter DELTA (k over arrow pointing right, T) is calculated for different quasiparticle dispersion relations and band fillings. The effect of specific momentum dependences of the order parameter on the tunneling density of states and the size of the apparent gap is discussed.
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SCHARNBERG K, Dahm T, ERDMENGER J. SUPERCONDUCTING STATES FROM SPIN FLUCTUATION MECHANISMS. Physica B Condensed Matter. 1994;194-196:1435-1436.
SCHARNBERG, K., Dahm, T., & ERDMENGER, J. (1994). SUPERCONDUCTING STATES FROM SPIN FLUCTUATION MECHANISMS. Physica B Condensed Matter, 194-196, 1435-1436.
SCHARNBERG, K., Dahm, T., and ERDMENGER, J. (1994). SUPERCONDUCTING STATES FROM SPIN FLUCTUATION MECHANISMS. Physica B Condensed Matter 194-196, 1435-1436.
SCHARNBERG, K., Dahm, T., & ERDMENGER, J., 1994. SUPERCONDUCTING STATES FROM SPIN FLUCTUATION MECHANISMS. Physica B Condensed Matter, 194-196, p 1435-1436.
K. SCHARNBERG, T. Dahm, and J. ERDMENGER, “SUPERCONDUCTING STATES FROM SPIN FLUCTUATION MECHANISMS”, Physica B Condensed Matter, vol. 194-196, 1994, pp. 1435-1436.
SCHARNBERG, K., Dahm, T., ERDMENGER, J.: SUPERCONDUCTING STATES FROM SPIN FLUCTUATION MECHANISMS. Physica B Condensed Matter. 194-196, 1435-1436 (1994).
SCHARNBERG, K, Dahm, Thomas, and ERDMENGER, J. “SUPERCONDUCTING STATES FROM SPIN FLUCTUATION MECHANISMS”. Physica B Condensed Matter 194-196 (1994): 1435-1436.
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