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$L^p$ Donoho-Stark Uncertainty Principles for the Dunkl Transform on ${\mathbb{R}^{\text{d}}}$
Project Euclid | 2014|Keywords: Concentration uncertainty principles -
$ ZrSe_{2} $-$ HfSe_{2} $ lateral heterostructures: stability, fundamental properties, and interline defects
Online Contents | 2023|Keywords: First-principles -
1.1 Survey of laser systems
1 Survey of laser systemsSpringer Verlag | 2007|Keywords: alpha-DFB laser; applications; argon-ion laser; beam parameter product BPP; catastrophic optical damage (COD); CO2 laser; coherent coupling; coherent emission; collisions of second kind; conversion efficiency; cutting; design; diffraction pattern; diode-pumped solid-state laser; direct writing; directional selectivity; distributed feedback (DFB); Einstein coefficients; electro-optical filamentation; epitaxial structures; excimer laser; excitation rate; experiments; feedback; feedback resonator; frequency doubling; Fresnel number; gas laser; heat sink; helium-neon laser; higher harmonics; high-power diode laser (HPDL); incoherent superposition; interference filter; introduction; laser polishing; laser threshold; marking; master oscillator power amplifier (MOPA); micro-lens array; micro-machining; micro-step mirror; nonlinear amplification; optical mode; optical mode volume; packaging; performance; phase transition of the second kind; piezo-electric mirror; polishing; principles; regenerative amplification; relaxation oscillation; resonator design; self-absorption; short-pulse solid-state laser; single emitters; slab design; slitting; soldering; solid-state laser; spiking time; superradiance; survey; Talbot effect; technical implementation; thermal lensing; thermal load; transformation hardening; transmission rate; UV lithography; welding; Zeeman cell; Z-laser -
1D Van der Waals Polymers with Nonlinear Optical Performance Approaching Theoretical Upper Limit
Wiley | 2023|Keywords: first‐principles calculations -
1T’ RexMo1−xS2–2H MoS2 Lateral Heterojunction for Enhanced Hydrogen Evolution Reaction Performance
Wiley | 2023|Keywords: first‐principles calculations -
2D $ Si_{3} $N as a Promising Anode Material for Li/Na-Ion Batteries from First-Principles Study
Online Contents | 2020|Keywords: first-principles calculations -
2D electrene LaH2 monolayer: an ideal ferrovalley direct semiconductor with room-temperature ferromagnetic stability
IOP Institute of Physics | 2022|Keywords: first-principles calculations -
2D Electrides: MXene Phase with C3 Structure Unit: A Family of 2D Electrides (Adv. Funct. Mater. 24/2021)
Wiley | 2021|Keywords: first principles -
2D high temperature ferromagnetic Co2Ti2Sn2 monolayer with tunable magnetic anisotropy and superior mechanical flexibility: A first-principles and Monte Carlo study
Elsevier | 2021|Keywords: First-principles calculations -
2D Multiferroicity with Ferroelectric Switching Induced Spin-Constrained Photoelectricity
American Chemical Society | 2022|Keywords: First-principles calculations -
2D novel C5N2 allotropes: High-performance anode materials for alkali metal ion battery
Elsevier | 2024|Keywords: First-principles calculations -
2D‐SnP3 as Promising Candidate for NO Sensor with High Sensitivity and Selectivity at Room Temperature: A First‐Principles Investigation
Wiley | 2023|Keywords: first-principles calculations -
2D V–VI Binary Nanosheets with Square Lattice: A Theoretical Investigation
Wiley | 2021|Keywords: first-principles calculations -
2-Player Nash and Nonsymmetric Bargaining Games: Algorithms and Structural Properties
Springer Verlag | 2010|Keywords: Models and Principles -
3.6 Gasdynamical lasers, chemical lasers
3 Gas lasersSpringer Verlag | 2007|Keywords: arc-driven; chain-reaction excitation; chain-reaction laser; chemical flame laser; chemical laser system; chemical reaction enthalpy; CO laser; COIL (chemical oxygen iodine laser) technology; combustion-driven; concluding remarks; continuous-wave CO laser; continuous-wave DF laser; continuous-wave DF-CO2 transfer chemical laser; continuous-wave HF laser; continuous-wave iodine laser (COIL); continuous-wave laser excitation; detonation wave; DF laser; diffusion chemical laser; diffusion type of chemical cw DF laser; diffusion type of chemical cw HF laser; discharge flow laser; discharge-initiated pulsed DF laser; discharge-initiated pulsed HF laser; discussion; emission spectrum; energy transfer; evaluation; explosion limit; flash-photolytically initiated reaction; fundamental processes; HBr laser; HCl laser; HF laser; HF+-molecule; historical background; hydrogen-chlorine explosion; introduction; iodine laser; laser efficiency; longitudinal gas-flow; magnetic dipole transition; Marx generator; miscellaneous; NO laser; numerical analysis; operation principles; optical ignition; photodissociation; photoionization; photolytical process; photolytically initiated iodine laser (PIL); pulsed CO laser; pulsed DF laser; pulsed HBr laser; pulsed HCl laser; pulsed HF laser; pulsed NO laser; pulsed system; pulsed transfer chemical (TCL) CO2 laser; pulsed transfer chemical (TCL) laser; repetitively pulsed DF laser; repetitively pulsed HF laser; rotational temperature; shock tube; specific reactions; subsonic continuous-wave DF-CO2 transfer chemical laser; supersonic chemical flow; supersonic cw DF-CO2 transfer chemical laser; transfer chemical laser (TCL); translational temperature; transverse excitation; transversely excited atmospheric pressure (TEA) CO2 laser; vibrational relaxation time; vibrational temperature; vibrationally excited hydrogen halides; vibrationally excited nitrogen; vibrational-rotational state -
3D continuum phonon model for group-IV 2D materials
Free accessBASE | 2017|Keywords: First-principles derivations -
3D printed geopolymer adsorption sieve for removal of methylene blue and adsorption mechanism
Elsevier | 2022|Keywords: First principles -
3d transition metal substituted Fe3Se4: prediction of potential permanent magnet
IOP Institute of Physics | 2023|Keywords: first-principles calculations -
4.1 Solid-state laser systems
4 Solid-state lasersLandolt-Börnstein / Springer Materials | 2008|Keywords: physical principles -
4.1 Solid-state laser systems
4 Solid-state lasersSpringer Verlag | 2008|Keywords: physical principles
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