The effect of finite rank perturbations on Jordan chains of linear operators
Jussi Behrndt+3 more
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Particular thermal metamaterials are widely used as daytime radiative coolers merely by embedding thermally emissive nanoparticles (NPs) in liquid resins to form scalable, yet highly efficient cooling films in a cost‐effective way. However, randomly dispersed NPs, prevalently used thus far, cause strong scattering, limiting NP content and cooling ...
YongDeok Cho+10 more
wiley +1 more source
Intrinsic and Measured Information in Separable Quantum Processes. [PDF]
Gier D, Crutchfield JP.
europepmc +1 more source
A theorem of Brown–Halmos type on the Bergman space modulo finite rank operators
Ding Xuan-hao, Yueshi Qin, Dechao Zheng
openalex +1 more source
Decomposability of finite rank operators in certain subspaces and algebras [PDF]
Jiankui Li
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This study demonstrates a molecular strategy to enhance the stretchability of conjugated polymers by incorporating plasticizing molecular additives (PMAs). PMAs reduce the persistence length and promote chain entanglement, enabling deformable thin films with preserved electrical performance. A systematic analysis combining rheology, neutron scattering,
Sein Chung+11 more
wiley +1 more source
Dynamic mode decomposition for analysis and prediction of metabolic oscillations from time-lapse imaging of cellular autofluorescence. [PDF]
Wüstner D, Gundestrup HH, Thaysen K.
europepmc +1 more source
Nitrogen‐Vacancy Magnetometry of Edge Magnetism in WS2 Flakes
Using nitrogen‐vacancy magnetometry, the authors visualize room‐temperature stray magnetic fields localized at the edges of WS2 flakes. Their measurements reveal edge‐specific magnetization consistent with spin canting in antiferromagnetically coupled edge states.
Ilja Fescenko+17 more
wiley +1 more source
Waste minimization strategies for environmental sustainability analysis of MABAC based on schweizer-sklar prioritized approach for circular bipolar fuzzy systems. [PDF]
Ashraf K+5 more
europepmc +1 more source
Engineering Highly Cellularized Living Materials via Mechanical Agitation
A mechanical agitation strategy is developed to engineer highly cellularized living materials, achieving cell densities of up to 1 billion cells per milliliter. By precisely tuning properties such as stiffness and toughness in blood clots, the approach is validated in both in vitro and in vivo studies.
Aram Bahmani+9 more
wiley +1 more source