Results 161 to 170 of about 1,277,681 (312)
Polynomial addition sets and polynomial digraphs
AbstractLet G be a group of order v, and f(x) be a nonzero integral polynomial. A (v, k, f(x))-polynomial addition set in G is a subset D of G with k distinct elements such that f(Σd∈Dd) = λΣg∈Gg for some integer λ. We discuss some general properties of polynomial addition sets.
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The tripodal terpyridine‐1,3,5‐benzene tricarboxamide (BTA) ligand 1 is employed in the self‐assembly formation of novel luminescent materials using a range of lanthanide ions. In the polar protic solution, the results from the photophysical measurements are assessed using nonlinear regression analysis, while the functional material properties of the ...
Jason M. Delente+6 more
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Stimulated Raman Scattering with Optical Vortex Beams
This study presents exact analytical expressions for stimulated Raman scattering with Laguerre‐Gaussian beams, revealing signal dependence on topological and hyperbolic momentum. The results provide a theoretical foundation for coherent Raman imaging and detecting orbital angular momentum of light via structured light in nonlinear optics.
Minhaeng Cho
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This work presents a systematic review of atmospheric turbulence fundamentals, including theoretical formulations and adaptive optics‐based mitigation strategies. This includes an in‐depth examination of the devices, theories, and methodologies associated with traditional correction approaches.
Qinghui Liu+5 more
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MATHEMATICS: POLYNOMIALS OF BEST APPROXIMATION ON A REAL FINITE POINT SET [PDF]
J. L. Walsh, T. S. Motzkin
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Coherent anti‐stokes Raman spectroscopy (CARS) enables high‐resolution vibrational imaging, yet non‐resonant background (NRB) distorts spectral fidelity. This review highlights NRB removal methods—from experimental strategies and numerical algorithms to emerging deep learning techniques.
Rajendhar Junjuri, Thomas Bocklitz
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Generating functions of Jacobi and related polynomials [PDF]
Fred Brafman
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High‐Throughput Single‐Nanowire Optoelectronic Characterization Using Microfluidic Technology
An ultrathin microfluidic platform enables high‐throughput, in‐line single particle characterization of semiconductor nanowires. Using correlative spectroscopy and imaging, analysis at 240 nanowires per minute, uncovering previously hidden details about intra‐wire disorder and inter‐wire inhomogeneity, is achieved.
Tharaka MDS Weeraddana+5 more
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