#superconductivity

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27 papers match

cond-mat.supr-con2026

Cavity Tuning of the CDW--Superconductivity Interplay in a Kagome Metal

Lan-Ting Shi, I-Te Lu, Xin Wang +3

The paper demonstrates that coupling a kagome metal (CsV₃Sb₅) to an out-of-plane polarized optical cavity can selectively soften charge‑density‑wave phonons, enhance electron‑phono…

#cavity quantum electrodynamics#charge density wave#superconductivity#kagome lattice
cond-mat.mes-hall2026

Anomalous metal and superconducting phases in rhombohedral graphene

Anna Okounkova, Abigail Sohm, Tobias Faehndrich +7

The paper investigates gate‑tuned regions in rhombohedral graphene on a WSe₂ substrate that show either zero‑resistance superconductivity or a finite‑resistance “anomalous metal” s…

#graphene#superconductivity#anomalous metal#gate‑tuned devices
cond-mat.supr-con2026

Electronically Inactive Intercalated LaNiO Layer in Superconducting LaNiO

Tianyang Xie, Yuxin Wang, Zhan Wang +2

The authors use density functional theory, Wannier tight‑binding, and slave‑boson calculations to show that the intercalated La₂NiO₄ layer in superconducting La₅Ni₃O₁₁ is insulatin…

#nickelates#ruddlesden-popper#superconductivity#electronic structure
math.NA2026

Numerical approach to the London Equation of superconductivity

Nicolás Barnafi, Ignacio Labarca-Figueroa, Carlos Román

The paper introduces a FEM‑BEM coupling discretization to solve the London equation for type‑II superconductors in three dimensions and uses it to compute magnetic fields and analy…

#london equation#finite element method#boundary element method#superconductivity
cond-mat.mes-hall2026

Scanning Gate Microscopy Modulation of Supercurrent in Graphene Josephson Junctions

Ivan Villani, Samuele Fracassi, Niccolò Traverso Ziani +9

The paper uses scanning gate microscopy to locally modulate and map the supercurrent in hBN‑encapsulated graphene Josephson junctions with niobium contacts, analyzing how tip volta…

#graphene#josephson junctions#scanning gate microscopy#supercurrent
cond-mat.supr-con2026

Momentum Structure of Superconductivity and Sublattice Effects from Quasiparticle Interference in CsVSb

Aaron G. Greenberg, Xinze Yang, Junze Deng +11

The paper uses sub‑Kelvin scanning tunneling microscopy and quasiparticle interference analysis to map the superconducting gap of the kagome metal CsV₃Sb₅, finding an isotropic gap…

#kagome lattice#superconductivity#quasiparticle interference#scanning tunneling microscopy
astro-ph.CO2026

Gravitational Waves from Superconducting Cosmic Strings

Jinyoung Jhun, Takashi Hiramatsu

The authors simulate superconducting cosmic‑string networks in a U(1)ₗₒcₐₗ × U(1)𝓰ₗₒbₐₗ field‑theoretic model, study how the coupling between the string‑forming and current‑carryi…

#cosmic strings#superconductivity#gravitational waves#field theory simulations
cond-mat.str-el2026

Driven-dissipative superconductivity in moiré heterostructure without attraction

Tsung-Sheng Huang, Atac Imamoglu, Mohammad Hafezi +1

The paper proposes a driven‑dissipative protocol that creates a stationary superconducting state in a two‑dimensional bilayer moiré heterostructure by using optically induced pseud…

#driven-dissipative systems#moiré heterostructures#superconductivity#pseudospin engineering
cond-mat.supr-con2026

Non-thermal pairing glue of electrons in the steady state

Michele Pini, Christian H. Johansen, Francesco Piazza

The paper extends Eliashberg theory to non‑equilibrium steady states using the Keldysh formalism and identifies a non‑thermal pairing glue that can enhance superconductivity, illus…

#superconductivity#non-equilibrium steady state#eliashberg theory#keldysh formalism
cond-mat.mes-hall2026

Competing Orders Driven by Wigner Crystal Phase in Rhombohedral Graphene

Zekang Zhou, Kilian Krötzsch, Raphaël Ayache +7

The paper identifies a Wigner crystal phase in low‑density rhombohedral pentalayer graphene and shows how it gives rise to competing superconducting and reentrant quantum Hall stat…

#wigner crystal#rhombohedral graphene#superconductivity#quantum Hall
cond-mat.supr-con2026

-axis strain tuning of superconductivity and symmetric elastoresistivity in CsVSb

Xiaoran Yang, Yutong Li, Chunyi Li +5

The study investigates how applying out-of-plane (c‑axis) compression to the kagome metal CsV₃Sb₅ influences its superconducting transition temperature and charge‑density‑wave orde…

#kagome metals#superconductivity#charge density wave#strain engineering
cond-mat.supr-con2026

Imaging and characterization of spontaneous vortices in a proximity-induced superconductor

Iku Nakaaki, Kotaro Taki, Mio Nomura +11

The paper reports scanning SQUID microscopy imaging of spontaneously formed vortices in a proximity‑coupled superconducting nanocomposite, revealing a variety of vortex polarities,…

#superconductivity#vortices#proximity effect#scanning squid microscopy
cond-mat.supr-con2026

Filling and Interlayer Superexchange Control Superconductivity in LaNiO

Zeyu Chen, Jia-Heng Ji, Yu-Bo Liu +2

The paper proposes that superconducting transition temperature in bilayer nickelate La₃Ni₂O₇ is controlled by the d_{x²‑y²} orbital filling and the interlayer antiferromagnetic sup…

#superconductivity#nickelate materials#orbital filling#interlayer superexchange
cond-mat.mes-hall2026

Helical Domain-Wall-Ring Networks Reshape Superconducting Correlations

Yi-Chun Hung, Arun Bansil

The paper investigates how superconducting correlations are modified in helical domain‑wall ring networks that arise in moiré patterns of twisted bilayer honeycomb lattices, highli…

#moiré materials#domain-wall networks#superconductivity#renormalization group
cond-mat.str-el2026

The Sample Pre-selection and Characterization Station at the SECUF: Instrumentation, Capabilities, and Representative Scientific Achievements

Xu Chen, Tao Sun, Huifen Ren +4

The paper describes the Sample Pre‑selection and Characterization Station at the SECUF, detailing its instrumentation for synthesizing, processing, and characterizing samples befor…

#sample preparation#high‑pressure instrumentation#extreme‑condition measurements#quantum materials
cond-mat.mtrl-sci2026

Research progress in high-pressure tuning of layered magnetic materials

Yue Dongdong, Gao Xin, Mu Congpu +2

The paper reviews how applying high pressure to two‑dimensional van der Waals magnetic materials can modify their interlayer structure and electronic properties, leading to spin tr…

#high pressure#layered magnetic materials#van der Waals#spin transitions
cond-mat.supr-con2026

Geometric origin of supercurrents in Berry phase: Formula for computing currents from wavefunctions with correlation and particle number variation

B. Q. Song, J. D. H. Smith, J. Wang

The paper presents a phase‑based formula that computes supercurrents directly from microscopic BCS wavefunctions, incorporating Berry‑phase derived group velocity and a correlation…

#superconductivity#berry phase#bcs theory#many-body currents
cond-mat.supr-con2026

Theoretical prediction of structural stability and superconductivity in T-hexagonal molybdenum dihydrides Monolayer

Jakkapat Seeyangnok, Udomsilp Pinsook

First-principles calculations predict that a hexagonal MoH2 monolayer in the T-phase is structurally stable and exhibits conventional superconductivity with a transition temperatur…

#2d materials#superconductivity#first-principles calculations#electron-phonon coupling
cond-mat.supr-con2026

Analytical evaluation of surface barrier and resistance in iron-based superconducting multilayers for Superconducting Radio-Frequency applications

Carlos Redondo Herrero, Akira Miyazaki

The paper evaluates how iron‑based superconducting multilayers perform as surface coatings for superconducting radio‑frequency cavities, focusing on their magnetic field limits, su…

#superconductivity#iron-based superconductors#multilayer structures#rf cavities
cond-mat.supr-con2026

Quantum-Geometry-Induced Superconductivity near a Fractional Chern Insulator

Haoyu Hu, Lei Chen

The paper analytically studies how quantum‑geometric effects in a partially filled Chern band can generate superconductivity adjacent to a fractional Chern insulator, using a coupl…

#fractional chern insulator#quantum geometry#superconductivity#topological bands
cond-mat.supr-con2026

Ferroelectric--Superconducting Interaction in Epitaxial YBa2Cu3O7-δ/BaTiO3 Films

Louis Oppong-Antwi, David L. Cortie, Qi Zhang +4

The study investigates how ferroelectric BaTiO3 layers affect the superconducting transition temperature of epitaxial YBa2Cu3O7‑δ films, finding reduced Tc in YBCO/BTO heterostruct…

#ferroelectric#superconductivity#heterostructures#oxide electronics
cond-mat.supr-con2026

Strain-Tuned Nodal Superconductivity in the Charge-Ordered Kagome Metal CsVSb

Yusuke Takeuchi, Akito Kobayashi, Saki Uchida +8

The authors use Sb NQR to study how uniaxial tensile strain affects superconductivity in the kagome metal CsVSb, finding an enhanced and a strain‑induced doub…

#kagome metal#superconductivity#uniaxial strain#charge density wave
cond-mat.supr-con2026

Interference-Enhanced Large Electron-Phonon Coupling from Raman-active Breathing Modes in Moiré Semiconductors

Ning Mao, Shaozheng Wang, Cheng Xu +6

The paper combines filling‑dependent Raman spectroscopy with machine‑learning‑assisted first‑principles calculations to identify which phonon modes strongly couple to electrons in…

#moiré semiconductors#electron-phonon coupling#Raman spectroscopy#twisted bilayer materials
cond-mat.mtrl-sci2026

Interlayer coupling driven stabilization and superconductivity in bilayer CoTe

Wenping Chen, Ziyun Zhang, Feipeng Zheng

First-principles calculations show that interlayer coupling stabilizes bilayer CoTe₂, which becomes a phonon-mediated superconductor with a predicted Tc of ~4.7 K, while the monola…

#van der waals materials#interlayer coupling#superconductivity#electron-phonon coupling

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