Extracting intrinsic superconducting properties in intercalated layered superconductors using an extended 2D Tinkham model

Fuente: arXiv
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Autori principali: Liu, Yue, Zhang, Yuhang, Lu, Zouyouwei, Li, Dong, Itahashi, Yuki M., Zhao, Zhanyi, Liu, Jiali, Lu, Jihu, Wu, Feng, Jin, Kui, Zhang, Hua, Liu, Ziyi, Dong, Xiaoli, Zhao, Zhongxian
Natura: Preprint
Pubblicazione: 2025
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author Liu, Yue
Zhang, Yuhang
Lu, Zouyouwei
Li, Dong
Itahashi, Yuki M.
Zhao, Zhanyi
Liu, Jiali
Lu, Jihu
Wu, Feng
Jin, Kui
Zhang, Hua
Liu, Ziyi
Dong, Xiaoli
Zhao, Zhongxian
author_facet Liu, Yue
Zhang, Yuhang
Lu, Zouyouwei
Li, Dong
Itahashi, Yuki M.
Zhao, Zhanyi
Liu, Jiali
Lu, Jihu
Wu, Feng
Jin, Kui
Zhang, Hua
Liu, Ziyi
Dong, Xiaoli
Zhao, Zhongxian
contents Bulk two dimensional (2D) superconductivity has gained considerable attention due to its intricate interplay between symmetry breaking, nontrivial topology, 2D phase fluctuations, and unconventional superconductivity. However, certain intercalated layered superconductors, despite their short c-axis superconducting coherence length, have been misclassified as anisotropic three-dimensional (3D) superconductors. Here, we investigate (Li,Fe)OHFeSe superconductors with varying degrees of interlayer misalignment, revealing sample-dependent superconducting dimensionality while consistently observing Berezinskii Kosterlitz Thouless (BKT) transitions. To resolve this discrepancy, we develop an extended 2D Tinkham model that quantitatively captures the blurring effects induced by interlayer misalignment. We further demonstrate the validity of this model in both (Li,Fe)OHFeSe and cetyltrimethyl ammonium (CTA+) intercalated (CTA)0.5SnSe2 superconductors, highlighting its broad applicability. This work provides valuable insights into bulk 2D superconductivity and establishes an extended 2D Tinkham model for quantitatively extracting intrinsic superconducting properties in intercalated layered superconductors, particularly those exhibiting significant interlayer misalignments.
format Preprint
id arxiv_https___arxiv_org_abs_2502_19733
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Extracting intrinsic superconducting properties in intercalated layered superconductors using an extended 2D Tinkham model
Liu, Yue
Zhang, Yuhang
Lu, Zouyouwei
Li, Dong
Itahashi, Yuki M.
Zhao, Zhanyi
Liu, Jiali
Lu, Jihu
Wu, Feng
Jin, Kui
Zhang, Hua
Liu, Ziyi
Dong, Xiaoli
Zhao, Zhongxian
Superconductivity
Materials Science
Bulk two dimensional (2D) superconductivity has gained considerable attention due to its intricate interplay between symmetry breaking, nontrivial topology, 2D phase fluctuations, and unconventional superconductivity. However, certain intercalated layered superconductors, despite their short c-axis superconducting coherence length, have been misclassified as anisotropic three-dimensional (3D) superconductors. Here, we investigate (Li,Fe)OHFeSe superconductors with varying degrees of interlayer misalignment, revealing sample-dependent superconducting dimensionality while consistently observing Berezinskii Kosterlitz Thouless (BKT) transitions. To resolve this discrepancy, we develop an extended 2D Tinkham model that quantitatively captures the blurring effects induced by interlayer misalignment. We further demonstrate the validity of this model in both (Li,Fe)OHFeSe and cetyltrimethyl ammonium (CTA+) intercalated (CTA)0.5SnSe2 superconductors, highlighting its broad applicability. This work provides valuable insights into bulk 2D superconductivity and establishes an extended 2D Tinkham model for quantitatively extracting intrinsic superconducting properties in intercalated layered superconductors, particularly those exhibiting significant interlayer misalignments.
title Extracting intrinsic superconducting properties in intercalated layered superconductors using an extended 2D Tinkham model
topic Superconductivity
Materials Science
url https://arxiv.org/abs/2502.19733