Investigating high temperature nickelate superconductivity through local stress and Meissner effect imaging using NV centers
ORAL
Abstract
Recent reports on signatures of high-temperature superconductivity in Ruddlesden-Popper (RP) Nickelates under pressure, with a critical temperature (Tc) near 80 K, have sparked great interest. By using a shallow layer of nitrogen-vacancy (NV) centers implanted directly within the diamond anvil applying the pressure, we show simultaneous evidence from both electrical transport and the Meissner effect of superconductivity of the single-crystal RP Nickelate La₃Ni₂O₇₋ₓ. Moreover, the micron scale spatial correlations between the diamagnetic response, local stress, and structural and chemical composition have been explored, offering insights into the origins of high-Tc superconductivity.
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Presenters
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Zhipan Wang
Harvard University, Harvard Univeristy
Authors
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Zhipan Wang
Harvard University, Harvard Univeristy
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Srinivas Mandyam
Harvard University
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Esther Chia-Yu Wang
Harvard University
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Bijuan Chen
Harvard University, HARVARD UNIVERSITY
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Nishan Jayarama
Boston University
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Meng Wang
Sun Yat-sen University, Sun Yat-Sen University, Department of Physics
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Christopher R Laumann
Boston University
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Norman Y Yao
Harvard University