Cho Chang-Woo, Lyu Jian, Ng Cheuk Yin, He James Jun, Lo Kwan To, Chareev Dmitriy, Abdel-Baset Tarob A, Abdel-Hafiez Mahmoud, Lortz Rolf
Department of Physics, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong.
Department of Physics, Southern University of Science and Technology, Xueyuan Road, Nanshan District, Shenzhen, Guangdong Province, China.
Nat Commun. 2021 Jun 16;12(1):3676. doi: 10.1038/s41467-021-23976-2.
We present measurements of the magnetic torque, specific heat and thermal expansion of the bulk transition metal dichalcogenide (TMD) superconductor NbS in high magnetic fields, with its layer structure aligned strictly parallel to the field using a piezo rotary positioner. The upper critical field of superconducting TMDs in the 2D form is known to be dramatically enhanced by a special form of Ising spin orbit coupling. This Ising superconductivity is very robust to the Pauli paramagnetic effect and can therefore exist beyond the Pauli limit for superconductivity. We find that superconductivity beyond the Pauli limit still exists in bulk single crystals of NbS for a precisely parallel field alignment. However, the comparison of our upper critical field transition line with numerical simulations rather points to the development of a Fulde-Ferrell-Larkin-Ovchinnikov state above the Pauli limit as a cause. This is also consistent with the observation of a magnetic field driven phase transition in the thermodynamic quantities within the superconducting state near the Pauli limit.
我们展示了在高磁场中对块状过渡金属二硫属化物(TMD)超导体NbS的磁转矩、比热和热膨胀的测量结果,使用压电旋转定位器将其层结构严格平行于磁场排列。已知二维形式的超导TMD的上临界场会因一种特殊形式的伊辛自旋轨道耦合而显著增强。这种伊辛超导对泡利顺磁效应非常稳健,因此可以存在于超导的泡利极限之上。我们发现,对于精确平行的场排列,块状NbS单晶中仍存在超过泡利极限的超导性。然而,我们的上临界场转变线与数值模拟的比较反而表明,泡利极限之上富尔德 - 费雷尔 - 拉金 - 奥夫钦尼科夫态的发展是其原因。这也与在泡利极限附近超导态内热力学量中观察到的磁场驱动相变相一致。