The Experts below are selected from a list of 324 Experts worldwide ranked by ideXlab platform

Jie Liu - One of the best experts on this subject based on the ideXlab platform.

  • properties of the temporal spatial Interference Pattern during soliton interaction
    Nonlinear Dynamics, 2016
    Co-Authors: Lichen Zhao, Liming Ling, Zhanying Yang, Jie Liu
    Abstract:

    Interference Patterns associated with solitonsoliton interaction are investigated in detail. We find that the temporal and spatial Interference Patterns exhibit quite different characteristics through performing the density calculation and asymptotic analysis technic on the well-known two-soliton solution. The period of the spatial Interference Pattern is determined by the relative velocity of the solitons, and the temporal Pattern behavior is determined by the peak amplitudes and the kinetic energy of the solitons. Analytical expressions for the periods of the Interference Patterns are obtained. A method for classifying the nonlinearity of many nonlinear systems is proposed. As an example, we discuss what can be read out from the nonlinear Interference Pattern between solitons in an ultra-cold atom system.

  • Temporal-Spatial Interference Pattern During Solitons Interaction
    Nonlinear Dynamics, 2015
    Co-Authors: Lichen Zhao, Liming Ling, Zhanying Yang, Jie Liu
    Abstract:

    Interference Patterns associated with soliton-soliton interaction are investigated in detail. We find that the temporal and spatial Interference Patterns exhibit quite different characteristics. The period of the spatial Interference Pattern is determined by the relative velocity of the solitons, and the temporal Pattern behavior is determined by the peak amplitudes and the kinetic energy of the solitons. Analytical expressions for the periods of the Interference Patterns are obtained. A method for classifying the nonlinearity of many nonlinear systems is proposed. As an example, we discuss possibilities to observe these properties of solitons in a nonlinear planar waveguide.

Lichen Zhao - One of the best experts on this subject based on the ideXlab platform.

  • properties of the temporal spatial Interference Pattern during soliton interaction
    Nonlinear Dynamics, 2016
    Co-Authors: Lichen Zhao, Liming Ling, Zhanying Yang, Jie Liu
    Abstract:

    Interference Patterns associated with solitonsoliton interaction are investigated in detail. We find that the temporal and spatial Interference Patterns exhibit quite different characteristics through performing the density calculation and asymptotic analysis technic on the well-known two-soliton solution. The period of the spatial Interference Pattern is determined by the relative velocity of the solitons, and the temporal Pattern behavior is determined by the peak amplitudes and the kinetic energy of the solitons. Analytical expressions for the periods of the Interference Patterns are obtained. A method for classifying the nonlinearity of many nonlinear systems is proposed. As an example, we discuss what can be read out from the nonlinear Interference Pattern between solitons in an ultra-cold atom system.

  • Temporal-Spatial Interference Pattern During Solitons Interaction
    Nonlinear Dynamics, 2015
    Co-Authors: Lichen Zhao, Liming Ling, Zhanying Yang, Jie Liu
    Abstract:

    Interference Patterns associated with soliton-soliton interaction are investigated in detail. We find that the temporal and spatial Interference Patterns exhibit quite different characteristics. The period of the spatial Interference Pattern is determined by the relative velocity of the solitons, and the temporal Pattern behavior is determined by the peak amplitudes and the kinetic energy of the solitons. Analytical expressions for the periods of the Interference Patterns are obtained. A method for classifying the nonlinearity of many nonlinear systems is proposed. As an example, we discuss possibilities to observe these properties of solitons in a nonlinear planar waveguide.

Liming Ling - One of the best experts on this subject based on the ideXlab platform.

  • properties of the temporal spatial Interference Pattern during soliton interaction
    Nonlinear Dynamics, 2016
    Co-Authors: Lichen Zhao, Liming Ling, Zhanying Yang, Jie Liu
    Abstract:

    Interference Patterns associated with solitonsoliton interaction are investigated in detail. We find that the temporal and spatial Interference Patterns exhibit quite different characteristics through performing the density calculation and asymptotic analysis technic on the well-known two-soliton solution. The period of the spatial Interference Pattern is determined by the relative velocity of the solitons, and the temporal Pattern behavior is determined by the peak amplitudes and the kinetic energy of the solitons. Analytical expressions for the periods of the Interference Patterns are obtained. A method for classifying the nonlinearity of many nonlinear systems is proposed. As an example, we discuss what can be read out from the nonlinear Interference Pattern between solitons in an ultra-cold atom system.

  • Temporal-Spatial Interference Pattern During Solitons Interaction
    Nonlinear Dynamics, 2015
    Co-Authors: Lichen Zhao, Liming Ling, Zhanying Yang, Jie Liu
    Abstract:

    Interference Patterns associated with soliton-soliton interaction are investigated in detail. We find that the temporal and spatial Interference Patterns exhibit quite different characteristics. The period of the spatial Interference Pattern is determined by the relative velocity of the solitons, and the temporal Pattern behavior is determined by the peak amplitudes and the kinetic energy of the solitons. Analytical expressions for the periods of the Interference Patterns are obtained. A method for classifying the nonlinearity of many nonlinear systems is proposed. As an example, we discuss possibilities to observe these properties of solitons in a nonlinear planar waveguide.

Zhanying Yang - One of the best experts on this subject based on the ideXlab platform.

  • properties of the temporal spatial Interference Pattern during soliton interaction
    Nonlinear Dynamics, 2016
    Co-Authors: Lichen Zhao, Liming Ling, Zhanying Yang, Jie Liu
    Abstract:

    Interference Patterns associated with solitonsoliton interaction are investigated in detail. We find that the temporal and spatial Interference Patterns exhibit quite different characteristics through performing the density calculation and asymptotic analysis technic on the well-known two-soliton solution. The period of the spatial Interference Pattern is determined by the relative velocity of the solitons, and the temporal Pattern behavior is determined by the peak amplitudes and the kinetic energy of the solitons. Analytical expressions for the periods of the Interference Patterns are obtained. A method for classifying the nonlinearity of many nonlinear systems is proposed. As an example, we discuss what can be read out from the nonlinear Interference Pattern between solitons in an ultra-cold atom system.

  • Temporal-Spatial Interference Pattern During Solitons Interaction
    Nonlinear Dynamics, 2015
    Co-Authors: Lichen Zhao, Liming Ling, Zhanying Yang, Jie Liu
    Abstract:

    Interference Patterns associated with soliton-soliton interaction are investigated in detail. We find that the temporal and spatial Interference Patterns exhibit quite different characteristics. The period of the spatial Interference Pattern is determined by the relative velocity of the solitons, and the temporal Pattern behavior is determined by the peak amplitudes and the kinetic energy of the solitons. Analytical expressions for the periods of the Interference Patterns are obtained. A method for classifying the nonlinearity of many nonlinear systems is proposed. As an example, we discuss possibilities to observe these properties of solitons in a nonlinear planar waveguide.

Thomas Jennewein - One of the best experts on this subject based on the ideXlab platform.

  • time resolved double slit Interference Pattern measurement with entangled photons
    Scientific Reports, 2015
    Co-Authors: Piotr Kolenderski, Carmelo Scarcella, Kelsey D. Johnsen, Deny R. Hamel, Catherine Holloway, Lynden K. Shalm, Simone Tisa, Alberto Tosi, Kevin J. Resch, Thomas Jennewein
    Abstract:

    The double-slit experiment strikingly demonstrates the wave-particle duality of quantum objects. In this famous experiment, particles pass one-by-one through a pair of slits and are detected on a distant screen. A distinct wave-like Pattern emerges after many discrete particle impacts as if each particle is passing through both slits and interfering with itself. Here we present a temporally- and spatially-resolved measurement of the double-slit Interference Pattern using single photons. We send single photons through a birefringent double-slit apparatus and use a linear array of single-photon detectors to observe the developing Interference Pattern. The analysis of the buildup allows us to compare quantum mechanics and the corpuscular model, which aims to explain the mystery of single-particle Interference. Finally, we send one photon from an entangled pair through our double-slit setup and show the dependence of the resulting Interference Pattern on the twin photon's measured state. Our results provide new insight into the dynamics of the buildup process in the double-slit experiment and can be used as a valuable resource in quantum information applications.

  • Time-resolved double-slit Interference Pattern measurement with entangled photons
    2013
    Co-Authors: Piotr Kolenderski, Carmelo Scarcella, Kelsey D. Johnsen, Deny R. Hamel, Catherine Holloway, Lynden K. Shalm, Simone Tisa, Alberto Tosi, Kevin J. Resch, Thomas Jennewein
    Abstract:

    The double-slit experiment strikingly demonstrates the wave-particle duality of quantum objects. In this famous experiment, particles pass one-by-one through a pair of slits and are detected on a distant screen. A distinct wave-like Pattern emerges after many discrete particle impacts as if each particle is passing through both slits and interfering with itself. While the direct event-by-event buildup of this Interference Pattern has been observed for massive particles such as electrons, neutrons, atoms and molecules, it has not yet been measured for massless particles like photons. Here we present a temporally- and spatially-resolved measurement of the double-slit Interference Pattern using single photons. We send single photons through a birefringent double-slit apparatus and use a linear array of single-photon detectors to observe the developing Interference Pattern. The analysis of the buildup allows us to compare quantum mechanics and the corpuscular model, which aims to explain the mystery of single-particle Interference. Finally, we send one photon from an entangled pair through our double-slit setup and show the dependence of the resulting Interference Pattern on the twin photon's measured state. Our results provide new insight into the dynamics of the buildup process in the double-slit experiment, and can be used as a valuable resource in quantum information applications.