Application of the finite-temperature Lanczos method for the evaluation of magnetocaloric properties of large magnetic molecules

Schnack J, Heesing C (2013)
Physics Of Condensed Matter 86(2).

Journal Article | Published | English

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We discuss the magnetocaloric properties of gadolinium containing magnetic molecules, which potentially could be used for sub-Kelvin cooling. We show that a degeneracy of a singlet ground state could be advantageous in order to support adiabatic processes to low temperatures and simultaneously minimize disturbing dipolar interactions. Since the Hilbert spaces of such spin systems assume very large dimensions, we evaluate the necessary thermodynamic observables by means of the finite-temperature Lanczos method.
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Schnack J, Heesing C. Application of the finite-temperature Lanczos method for the evaluation of magnetocaloric properties of large magnetic molecules. Physics Of Condensed Matter. 2013;86(2).
Schnack, J., & Heesing, C. (2013). Application of the finite-temperature Lanczos method for the evaluation of magnetocaloric properties of large magnetic molecules. Physics Of Condensed Matter, 86(2).
Schnack, J., and Heesing, C. (2013). Application of the finite-temperature Lanczos method for the evaluation of magnetocaloric properties of large magnetic molecules. Physics Of Condensed Matter 86.
Schnack, J., & Heesing, C., 2013. Application of the finite-temperature Lanczos method for the evaluation of magnetocaloric properties of large magnetic molecules. Physics Of Condensed Matter, 86(2).
J. Schnack and C. Heesing, “Application of the finite-temperature Lanczos method for the evaluation of magnetocaloric properties of large magnetic molecules”, Physics Of Condensed Matter, vol. 86, 2013.
Schnack, J., Heesing, C.: Application of the finite-temperature Lanczos method for the evaluation of magnetocaloric properties of large magnetic molecules. Physics Of Condensed Matter. 86, (2013).
Schnack, Jürgen, and Heesing, Christian. “Application of the finite-temperature Lanczos method for the evaluation of magnetocaloric properties of large magnetic molecules”. Physics Of Condensed Matter 86.2 (2013).
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