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Envelope (waves)

  • First-Principles Envelope-Function Theory for Lattice-Matched Semiconductor Heterostructures

    First-Principles Envelope-Function Theory for Lattice-Matched Semiconductor Heterostructures

  • Laser Envelope Model In

    Laser Envelope Model In

  • The K·P Method Lokc.Lewyanvoon· Morten Willatzen

    The K·P Method Lokc.Lewyanvoon· Morten Willatzen

  • Introducing the Rossby Wave Packet Tool

    Introducing the Rossby Wave Packet Tool

  • Wavepacket and Dispersion

    Wavepacket and Dispersion

  • Laser Wakefield Simulation Using a Speed-Of-Light Frame Envelope Model

    Laser Wakefield Simulation Using a Speed-Of-Light Frame Envelope Model

  • Laser Wakefield Simulation Using a Speed-Of-Light Frame Envelope Model

    Laser Wakefield Simulation Using a Speed-Of-Light Frame Envelope Model

  • The Influence of a Pressure Wavepacket's Characteristics on Its

    The Influence of a Pressure Wavepacket's Characteristics on Its

  • 2.2 the Nonlinear Schrödinger Equation As an Envelope Equation

    2.2 the Nonlinear Schrödinger Equation As an Envelope Equation

  • A Spatial Envelope Soliton

    A Spatial Envelope Soliton

  • The Hydrodynamic Nonlinear Schrödinger Equation: Space and Time

    The Hydrodynamic Nonlinear Schrödinger Equation: Space and Time

  • CHAPTER 7 Envelope Solitary Waves

    CHAPTER 7 Envelope Solitary Waves

  • Carrier-Envelope Phase Control of Femtosecond Mode-Locked Lasers

    Carrier-Envelope Phase Control of Femtosecond Mode-Locked Lasers

  • Constant Envelope Modulation Techniques for Limited Power Millimeter Wave Links

    Constant Envelope Modulation Techniques for Limited Power Millimeter Wave Links

  • Laboratory and Numerical Study of Intense Envelope Solitons of Water Waves: Generation, Reflection from a Wall and Collisions

    Laboratory and Numerical Study of Intense Envelope Solitons of Water Waves: Generation, Reflection from a Wall and Collisions

  • K · P THEORY of SEMICONDUCTOR NANOSTRUCTURES

    K · P THEORY of SEMICONDUCTOR NANOSTRUCTURES

  • Kp Method for Bulks

    Kp Method for Bulks

  • Envelope Bright- and Dark-Soliton Solutions for the Gerdjikov–Ivanov Model

    Envelope Bright- and Dark-Soliton Solutions for the Gerdjikov–Ivanov Model

Top View
  • Envelope Functions and Effective Mass Approximation
  • Few-Cycle, Carrier–Envelope-Phase-Stable Laser Pulses from a Compact Supercontinuum Source
  • Titled Gain-Assisted Superluminal Light Propagation Reports to Have
  • 18. Standing Waves, Beats, and Group Velocity
  • Arxiv:1105.1351V6 [Cond-Mat.Mes-Hall] 17 Aug 2020 ( the 10.1393/Ncr/I2011-10068-1 DOI CIMENTO NUOVO DEL RIVISTA
  • Dynamics of Internal Envelope Solitons in a Rotating Fluid of a Variable Depth
  • Class 17: the Uncertainty Principle
  • 939 Electron-Phonon Interactions In
  • Envelope Solitons in a Medium with Strong Nonlinear Damping Y
  • An Accurate and Efficient Laser-Envelope Solver for The
  • Experimental Study of the Coherent A1 Phonons in Te with Tailored Femtosecond Pulses
  • Nonlinear De Broglie Waves and the Relation Between
  • Transformation of Envelope Solitons on a Bottom Step
  • “Slow” and “Fast” Light
  • Nonlinear Phononics As an Ultrafast Route to Lattice Control M


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