2D Multifunctional Spin‐Orbit Coupled Dirac Nodal Line Materials
A total of 473 nonmagnetic and antiferromagnetic 2D spin‐orbit coupled Dirac nodal line materials are screened, spanning 5 layer groups and 12 magnetic space groups. Furthermore, it integrates their topological properties with electride, multiferroic, and magnetic characteristics, revealing unique systems with expanded functionalities and promising ...
Weizhen Meng+7 more
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Nonlinear optical simulation of the post-Newton Schrödinger equation. [PDF]
Paz O+3 more
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Closure to “Discussions of ‘Steady Oscillations of Systems With Nonlinear and Unsymmetrical Elasticity’” (1939, ASME J. Appl. Mech., 6, pp. A91–A92) [PDF]
Manfred Rauscher
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Defects in Inorganic Mechanoluminescent Phosphors: Insights and Impacts
Mechanoluminescence is attracting more attention recently, and defect dominates mechanoluminescence performances. Investigating how defects work in the mechanoluminescence process is crucial for elucidating its complex luminescence mechanism. This review aims to emphasize the fundamental role of defects in mechanoluminescence, which offers an ...
Wenhao Li+3 more
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A state observer-based robust control method for perturbation-containing nonlinear discrete interconnected Systems. [PDF]
Sun Y, Wen Y, Li H, Du Y.
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Discussion: “Steady Oscillations of Systems With Nonlinear and Unsymmetrical Elasticity” (Rauscher, Manfred, 1938, ASME J. Appl. Mech., 5, pp. A169–A177) [PDF]
R. P. Kroon
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An integrated computational–experimental strategy accelerates the discovery of high‐performance PCFC cathodes. Computational screening using machine learning interatomic potentials and targeted experiments identifies optimal cobalt substitution in Ba0.95La0.05FeO3‐δ, reducing area‐specific resistance by 58% at 500 °C.
Abdullah Tahir+4 more
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Near-ultrastrong nonlinear light-matter coupling in superconducting circuits. [PDF]
Ye Y+11 more
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Discussion: “Vibration of a Nonlinear System During Acceleration Through Resonance” (Meuser, R. B., and Weibel, E. E., 1948, ASME J. Appl. Mech., 15, pp. 21–24) [PDF]
F. M. Lewis
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