Agosta Charles C, Fortune Nathanael A, Hannahs Scott T, Gu Shuyao, Liang Lucy, Park Ju-Hyun, Schleuter John A
Physics Department, Clark University, 950 Main Street, Worcester, Massachusetts 01610, USA.
Physics Department, Smith College, 44 College Lane, Northampton, Massachusetts 01063, USA.
Phys Rev Lett. 2017 Jun 30;118(26):267001. doi: 10.1103/PhysRevLett.118.267001. Epub 2017 Jun 28.
We report the first magnetocaloric and calorimetric observations of a magnetic-field-induced phase transition within a superconducting state to the long-sought exotic Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) superconducting state, first predicted over 50 years ago. Through the combination of bulk thermodynamic calorimetric and magnetocaloric measurements in the organic superconductor κ-(BEDT-TTF){2}Cu(NCS){2} as a function of temperature, magnetic field strength, and magnetic field orientation, we establish for the first time that this field-induced first-order phase transition at the paramagnetic limit H_{p} is a transition to a higher-entropy superconducting phase, uniquely characteristic of the FFLO state. We also establish that this high-field superconducting state displays the bulk paramagnetic ordering of spin domains required of the FFLO state. These results rule out the alternate possibility of spin-density wave ordering in the high-field superconducting phase. The phase diagram determined from our measurements-including the observation of a phase transition into the FFLO phase at H_{p}-is in good agreement with recent NMR results and our own earlier tunnel-diode magnetic penetration depth experiments but is in disagreement with the only previous calorimetric report.
我们报告了首次对超导态内磁场诱导的相变到长期以来寻找的奇异富尔德 - 费雷尔 - 拉金 - 奥夫钦尼科夫(FFLO)超导态进行的磁热和量热观测,该超导态早在50多年前就被首次预测。通过在有机超导体κ-(BEDT-TTF)₂Cu(NCS)₂中作为温度、磁场强度和磁场取向函数的体热力学量热和磁热测量相结合,我们首次确定在顺磁极限Hₚ处这种场诱导的一级相变是向更高熵超导相的转变,这是FFLO态独有的特征。我们还确定这种高场超导态表现出FFLO态所需的自旋域的体顺磁有序。这些结果排除了高场超导相中自旋密度波有序的另一种可能性。由我们的测量确定的相图——包括在Hₚ处观察到向FFLO相的相变——与最近的核磁共振结果以及我们自己早期的隧道二极管磁穿透深度实验结果吻合良好,但与之前唯一的量热报告不一致。