author_facet Yan, Z. B.
Wang, K. F.
Li, S. Z.
Luo, S. J.
Liu, J.-M.
Yan, Z. B.
Wang, K. F.
Li, S. Z.
Luo, S. J.
Liu, J.-M.
author Yan, Z. B.
Wang, K. F.
Li, S. Z.
Luo, S. J.
Liu, J.-M.
spellingShingle Yan, Z. B.
Wang, K. F.
Li, S. Z.
Luo, S. J.
Liu, J.-M.
Applied Physics Letters
Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition
Physics and Astronomy (miscellaneous)
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spelling Yan, Z. B. Wang, K. F. Li, S. Z. Luo, S. J. Liu, J.-M. 0003-6951 1077-3118 AIP Publishing Physics and Astronomy (miscellaneous) http://dx.doi.org/10.1063/1.3241997 <jats:p>The reversible resistance switching (RS) controlled by current pulse pairs, accompanied with an overshooting relaxation, is observed in bulk La0.225Pr0.4Ca0.375MnO3. We demonstrate that the reversible RS effect is not the result of current-induced intrinsic transition of charge-ordered insulator (COI) into ferromagnetic metal (FMM) phase, but the outcome of Joule-heat-assisted transition between the FMM and COI phases. A local thermal-cycle assisted rearrangement of the FMM phase in the COI matrix is controllable by a current pulse, opening a possibility for multistate memory applications.</jats:p> Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition Applied Physics Letters
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series Applied Physics Letters
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title Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition
title_unstemmed Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition
title_full Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition
title_fullStr Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition
title_full_unstemmed Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition
title_short Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition
title_sort reversible resistance switching in la0.225pr0.4ca0.375mno3: the joule-heat-assisted phase transition
topic Physics and Astronomy (miscellaneous)
url http://dx.doi.org/10.1063/1.3241997
publishDate 2009
physical
description <jats:p>The reversible resistance switching (RS) controlled by current pulse pairs, accompanied with an overshooting relaxation, is observed in bulk La0.225Pr0.4Ca0.375MnO3. We demonstrate that the reversible RS effect is not the result of current-induced intrinsic transition of charge-ordered insulator (COI) into ferromagnetic metal (FMM) phase, but the outcome of Joule-heat-assisted transition between the FMM and COI phases. A local thermal-cycle assisted rearrangement of the FMM phase in the COI matrix is controllable by a current pulse, opening a possibility for multistate memory applications.</jats:p>
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author Yan, Z. B., Wang, K. F., Li, S. Z., Luo, S. J., Liu, J.-M.
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description <jats:p>The reversible resistance switching (RS) controlled by current pulse pairs, accompanied with an overshooting relaxation, is observed in bulk La0.225Pr0.4Ca0.375MnO3. We demonstrate that the reversible RS effect is not the result of current-induced intrinsic transition of charge-ordered insulator (COI) into ferromagnetic metal (FMM) phase, but the outcome of Joule-heat-assisted transition between the FMM and COI phases. A local thermal-cycle assisted rearrangement of the FMM phase in the COI matrix is controllable by a current pulse, opening a possibility for multistate memory applications.</jats:p>
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spelling Yan, Z. B. Wang, K. F. Li, S. Z. Luo, S. J. Liu, J.-M. 0003-6951 1077-3118 AIP Publishing Physics and Astronomy (miscellaneous) http://dx.doi.org/10.1063/1.3241997 <jats:p>The reversible resistance switching (RS) controlled by current pulse pairs, accompanied with an overshooting relaxation, is observed in bulk La0.225Pr0.4Ca0.375MnO3. We demonstrate that the reversible RS effect is not the result of current-induced intrinsic transition of charge-ordered insulator (COI) into ferromagnetic metal (FMM) phase, but the outcome of Joule-heat-assisted transition between the FMM and COI phases. A local thermal-cycle assisted rearrangement of the FMM phase in the COI matrix is controllable by a current pulse, opening a possibility for multistate memory applications.</jats:p> Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition Applied Physics Letters
spellingShingle Yan, Z. B., Wang, K. F., Li, S. Z., Luo, S. J., Liu, J.-M., Applied Physics Letters, Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition, Physics and Astronomy (miscellaneous)
title Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition
title_full Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition
title_fullStr Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition
title_full_unstemmed Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition
title_short Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition
title_sort reversible resistance switching in la0.225pr0.4ca0.375mno3: the joule-heat-assisted phase transition
title_unstemmed Reversible resistance switching in La0.225Pr0.4Ca0.375MnO3: The Joule-heat-assisted phase transition
topic Physics and Astronomy (miscellaneous)
url http://dx.doi.org/10.1063/1.3241997