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Altermagnets (AMs), characterized by zero net magnetization and momentum-dependent spin splitting, are anticipated to hold significant potential for generating multiple exotic and uncommon superconducting states. However, superconductivity…

超导电性 · 物理学 2026-04-02 Y. Sun , Z. Yin , T. Zhang , L. Wang , B. Ruan , Y. Huang , J. He , W. Zhu , M. Ma , J. Bai , J. Cheng , Q. Dong , C. Li , P. Liu , Q. Liu , C. Zhang , G. Chen

Altermagnetism has recently emerged as a distinct and fundamental class of magnetic order. Exploring its interplay with quantum phenomena such as unconventional superconductivity, density-wave instabilities, and many-body effects represents…

强关联电子 · 物理学 2025-09-18 Yuanji Xu , Huiyuan Zhang , Maoyuan Feng , Fuyang Tian

Beyond conventional ferromagnetism and antiferromagnetism, altermagnetism is a recently discovered unconventional magnetic phase characterized by time-reversal symmetry breaking and spin-split band structures in materials with zero net…

Transition-metal chalcogenides host various phases of matter, such as charge-density wave (CDW), superconductors, and topological insulators or semimetals. Superconductivity and its competition with CDW in low-dimensional compounds have…

We report the crystal growth, structure, physical properties, and first-principles calculations of a vanadium-based oxytelluride Cs$_{1-\delta}$V$_2$Te$_2$O. The material possesses two-dimensional V$_2$O square nets sandwiched by tellurium…

材料科学 · 物理学 2026-01-01 Chang-Chao Liu , Jing Li , Ji-Yong Liu , Jia-Yi Lu , Hua-Xun Li , Yi Liu , Guang-Han Cao

Altermagnets represent a new class of magnetic phases without net magnetization that are invariant under a combination of rotation and time reversal. Unlike conventional collinear antiferromagnets (AFM), altermagnets could lead to new…

Altermagnets, combining zero net magnetization with intrinsic spin splitting, demonstrate unique quantum phenomena crucial for spintronic applications. KV$_2$Se$_2$O is proven to be a d-wave altermagnet with phase transition from a…

材料科学 · 物理学 2026-02-04 Xu Yan , Ziyin Song , Juntao Song , Zhong Fang , Hongming Weng , Quansheng Wu

Since the discovery of cuprate high-Tc superconductivity, numerous theoretical frameworks have been proposed to explain its mechanism; Anderson's RVB picture [Science 235, 1196-1198, 1987] and U(1) gauge theory [Phys. Rev. Lett. 76,…

超导电性 · 物理学 2025-09-19 Tom G. Saunderson , James F. Annett , Samir Lounis

Metal-to-insulator transitions (MITs), particularly near room temperature, have been extensively studied in nonmagnetic and conventional ferromagnetic and antiferromagnetic systems, yet the co-emergence of MIT and altermagnetism (AM)…

By using solid-state reactions, we successfully synthesize new oxyselenides CsV$_2$Se$_{2-x}$O (x = 0, 0.5). These compounds containing V$_2$O planar layers with a square lattice crystallize in the CeCr$_2$Si$_2$C structure with the space…

材料科学 · 物理学 2018-08-22 Hai Lin , Jin Si , Xiyu Zhu , Kehan Cai , Hao Li , Lu Kong , Xiaodong Yu , Hai-Hu Wen

Altermagnetism, a recently identified magnetic phase that combines vanishing net magnetization with momentum-dependent spin splitting, challenges the conventional dichotomy between ferromagnets and antiferromagnets. While several candidate…

Altermagnets offer a unique pathway to functional spintronics by combining vanishing magnetization with large spin splitting. Here, we demonstrate that the canonical d-wave altermagnet KV2Se2O can deliver giant tunneling magnetoresistance…

材料科学 · 物理学 2026-02-26 Bin Liu , Pei-Hao Fu , Yu-Xuan Sun , Xiao-Lin Zhang , Si-Cong Zhu , Xiang-Long Yu , Hua Wu , Yuan-Zhi Shao

Among the complex many-body systems, the metal-insulator transition stands out as a cornerstone and a particularly fertile ground for scientific inquiry. The established models including Mott insulator, Anderson localization and Peierls…

We systematically investigate the emergence of finite-momentum Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) superconductivity in a square lattice Hubbard model with finite filling, driven by either $d_{xy}$-wave or $d_{x^{2}-y^{2}}$-wave…

超导电性 · 物理学 2026-01-13 Xia-Ji Liu , Hui Hu

CePtSi2 was reported to exhibit an antiferromagnetic order below T*=1.8 K at ambient pressure, a valence state change at ~1.2 GPa, and superconductivity in the range between 1.4 and 2.1 GPa with the maximum transition temperature of 0.14 K…

强关联电子 · 物理学 2022-06-17 S. E. Dissanayake , F. Ye , W. Tian , M. Matsuda , H. Muto , S. Suzuki , T. Nakano , S. Watanabe , J. Gouchi , Y. Uwatoko

Altermagnets have recently emerged as a distinct class of magnetic systems that exhibit spin splitting of electronic bands while retaining zero net magnetization. This unique combination makes them a promising platform for time-reversal…

介观与纳米尺度物理 · 物理学 2026-01-08 Constantin Schrade , Sujit Manna , Mathias S. Scheurer

Current studies of non-reciprocal superconducting (SC) transport have centered on the forward-backward asymmetry of the critical current measured along a single axis. In most realizations, this diode effect is achieved via introducing…

超导电性 · 物理学 2025-12-05 F. Yang , L. Q. Chen

We investigate the superconductivity of two-dimensional spin-1/2 Fermi systems with $d$-wave altermagnetism under external magnetic field near zero temperature. At large altermagnetic coupling without magnetic field, we show that…

超导电性 · 物理学 2026-01-13 Hui Hu , Zhao Liu , Xia-Ji Liu

The interplay between conventional superconductivity and unconventional magnetism offers an exciting platform for realizing exotic superconducting phenomena. Here, we investigate Josephson effects in planar and vertical junctions based on…

超导电性 · 物理学 2026-02-17 Chuang Li , Jin-Xing Hou , Shuai-Ling Zhu , Hao Zheng , Yu Song , Yang Liu , Song-Bo Zhang , Lun-Hui Hu

Unconventional magnetic orders usually interplay with superconductivity in intriguing ways. Here we propose that a conventional superconductor in proximity to a compensated $p$-wave magnet exhibits behaviors analogous to those of Ising…

超导电性 · 物理学 2025-12-23 Zi-Ting Sun , Xilin Feng , Ying-Ming Xie , Benjamin T. Zhou , Jin-Xin Hu , K. T. Law
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