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Advance publication (published online immediately after acceptance)

Volume E76-C No.10  (Publication Date:1993/10/25)

    Special Issue on the 1992 Symposium on Electromagnetic Theory
  • FOREWORD

    Masanori KOSHIBA  

     
    FOREWORD

      Page(s):
    1433-1434
  • Scattering of Electromagnetic Waves by a Dielectric Grating with Planar Slanted-Fringe

    Tsuneki YAMASAKI  Hirotaka TANAKA  

     
    PAPER-Scattering and Diffraction

      Page(s):
    1435-1442

    The scattering of electromagnetic waves by a dielectric grating with planar slanted-fringe is analyzed using the improved Fourier series expansion method. In the analysis, the slanted grating region is divided into layers to make an assembly of stratified thin modulated index layers. This method can be applied to a wide range of periodic structures and is especially effective in the case of planar slanted grating, because the electromagnetic fields in the each layer can easily be obtained by shifting the solution in the first layer. In this paper, the numerical results are given for grating with rectangular and sinusoidal dielectric profiles, and for TM and TE cases of arbitrary incident angle. The diffraction efficiencies obtained by the presented method are compared with the results by the coupled-wave approach; the influences of the slant angle on the diffraction efficiencies at the Wood's anomaly and at the coupling resonance frequency are also discussed.

  • Scattering Characteristics of Stratified Chiral Slab

    Mitsuru TANAKA  Atsushi KUSUNOKI  

     
    PAPER-Scattering and Diffraction

      Page(s):
    1443-1448

    Scattering characteristics of a stratified chiral slab, which is composed of dielectric chiral layers of different material properties and thicknesses, are extensively explored. Design considerations for optical filters are also presented for both the cases of normal and oblique incidence. In the analysis, the incident field is assumed to be a plane monochromatic wave of any arbitrary polarization. The transmitted and reflected electric fields are obtained by noting the fact that the electric field inside a chiral medium is expressed as a sum of the left- and right-circularly polarized plane waves of different phase velocities. Then one can describe the power densities and the Stokes parameters of the transmitted and reflected waves in terms of their field components. As is well known,the Stokes parameters characterize every possible state of polarization of a plane wave. Numerical examples are presented to show the effects of chirality on polarization conversion properties of the stratified chiral slab. The cross- and co-polarized powers and the Stokes parameters of the transmitted and reflected waves are computed for the incident wave of perpendicular polarization. The numerical results demonstrate novel depolarization properties of the slab with application to the design of efficient filters active at the optical region. It is seen from the results that the stratified chiral slab acts as a polarization-conversion transmission filter that passes only a cross-polarized component of the transmitted wave at some frequency band. Furthermore, the slab may be utilized as an antireflection filter for both the cross- and co-po1arized components of the reflected wave at the band region.

  • Two-Dimensional Target Profiling by Electromagnetic Backscattering

    Saburo ADACHI  Toru UNO  Tsutomu NAKAKI  

     
    PAPER-Inverse Problem

      Page(s):
    1449-1455

    This paper discusses methods and numerical simulations of one and two dimensional profilings for an arbitrary convex conducting target using the electromagnetic backscattering. The inversions for profile reconstructions are based upon the modified extended physical optics method (EPO). The modified EPO method assumes the modified physical optics current properly over the entire surface of conducting scatterers. First, the cross sectional area along a line of sight is reconstructed by performing iteratively the Fourier transform of the backscattering field in the frequency domain. Second, the two dimensional profile is reconstructed by synthesizing the above one dimensional results for several incident angles. Numerical simulation results of the target profiling are shown for spheroids and cone-spheroid.

  • Inverse Scattering Analysis Based on the Equivalent Source Method for Perfectly Conducting Cylinders Using Scattered Data of Several Frequencies

    Mario G. FROMOW RANGEL  Akira NOGUCHI  

     
    PAPER-Inverse Problem

      Page(s):
    1456-1460

    The inverse problem we consider in this paper seeks, based on the equivalent source method, to determine the shape of perfectly conducting cylinders from the scattered farfield data obtained by using several incident waves. When incident waves of different frequencies are used, the shape of the scatterer can be reconstructed by employing only a few number of observation points. In the reconstruction problem, to determine the shape of the scatterer, the conjugate gradients method is applied. The general approach is applicable to cylindrical scatterers of arbitrary shape. Results of numerical simulations are presented to support the suggested approach.

  • Numerical Analysis of the Effective Dielectric Constant of the Medium where Dielectric Spheres are Randomly Distributed

    Mitsuo TATEIBA  Yukihisa NANBU  Toshio OE  

     
    PAPER-Random Medium

      Page(s):
    1461-1467

    The effective dielectric constant εeff of discrete random medium composed of many dielectric spheres has been analyzed by EFA (Effective Field Approximation), QCA (Quasicrystalline Approximation) and QCA-CP (Quasicrystalline Approximation and Coherent Potential) in the case where the optical path length is very large in the medium. These methods lead to a reasonable K for non-large dielectric constants of spheres, while their methods yield an unphysical dependence of εeff on large dielectric constants of spheres: that is, the εeff does not become large for increasing the dielectric constant. In this paper, we remove the unphysical dependence and present new results for εeff of our method, comparing with the results for εeff of EFA, QCA and QCA-CP.

  • FDTD Analysis of Two-Dimensional Cavity-Backed Antenna for Subsurface Radar

    Osamu MAESHIMA  Toru UNO  Yiwei HE  Saburo ADACHI  

     
    PAPER-Transient Field

      Page(s):
    1468-1473

    The antennas for subsurface radar are usually covered with a conducting cavity to prevent the radiation field from affecting the electromagnetic environment and to protect the received field from external noises. Furthermore, radiowave absorber is attached to the interior wall of the cavity in order to suppress the multiple reflections in the cavity. In this paper, the characteristics of the two-dimensional cavity-backed antenna having the absorber and the over-all properties of this subsurface radar due to buried objects are numerically analyzed by the Finite-Difference Time-Domain method. It is shown that the pulse propagation in the ground is confined to the narrow region due to the cavity. It is also shown that the multiple reflections in the cavity are effectively suppressed by choosing the suitable absorber, and so that the distinctive pulse echo can be obtained.

  • Transient Backward and Forward Scattering of Electromagnetic Waves by a Conducting Rectangular Cylinder with an Open Side-Wall--The Case of a Half Sine Pulse lncident on the Open Side and the Closed Side--

    Shinichiro OHNUKI  Tsuneki YAMASAKI  Takashi HINATA  

     
    PAPER-Transient Field

      Page(s):
    1474-1480

    The transient scattering of a half sine pulse wave by a conducting rectangular cylinder with an open sidewall is rigorously analyzed by using the point matching method (taking into account the edge condition exactly) combined with the fast inversion of Laplace transform. Numerical results are presented for back scattered and forward scattered responses of the far fields when a half sine pulse is incident on the open side and the closed side of the cylinder. The physical meaning of the transient responses is discussed in detail. The comparison of the responses with those by a perfect conducting rectangular cylinder is presented.

  • Analysis of Characteristics of a Cherenkov Laser for an Electromagnetic Wave with Continuous Frequency Spectrum

    Katsuhiko HORINOUCHI  Masahiro SATA  Toshiyuki SHIOZAWA  

     
    PAPER-Transient Field

      Page(s):
    1481-1486

    The characteristics of an open-boundary Cherenkov laser for an electromagnetic wave with a continuous frequency spectrum are numerically analyzed. A given power spectral density for the input wave is found to get concentrated around the frequency where the spatial growth rate is maximum, as it grows along the electron beam. In addition, the frequency for the maximum growth rate is found to shift gradually to higher values. Furthermore, by gradually increasing the permittivity of the dielectric waveguide along it, we can always get the maximum power spectral density at the frequency where the spatial growth rate initially becomes maximum at the input.

  • Broadband Fibre Loop Reflectors

    Katsumi MORISHITA  Yoshitaka KOSHIBA  Masamichi S. YATAKI  

     
    PAPER-Optical Device

      Page(s):
    1487-1490

    A wavelength-insensitive reflector is demonstrated with a fibre loop which has an asymmetry in the constituent coupler. The reflector is made by thinning one of two identical fibres. The reflected power is more than 0.6 dB (87%) over the wavelength region of 1.2-1.35 µm and 1.42-1.65 µm. The transmitted power is less than 30 dB in the 1.23-1.63 µm region and less than 40 dB at 1.3 and 1.55 µm.

  • Wavelength Demultiplexer Utilizing Stratified Waveguides with a Tapered Buffer Layer

    Kiyoshi KISHIOKA  Heihachiro OCHIAI  

     
    PAPER-Optical Device

      Page(s):
    1491-1497

    In this paper, a novel Y-junction type demultiplexer utilizing a stratified-waveguide configuration in the branching region is proposed for the purpose of improving the extinction ratio. A high extinction ratio of about 20 dB is achieved at 0.6328 µm and 0.83 µm operation wavelengths both for the TE and TM modes. The properties of the new type branchig waveguides which consist of the diffused waveguide and the striploaded waveguide are described to explain the operation principle. Simulation results by the BPM are also shown to check the designed values of the waveguide parameters.

  • Analysis of Wave Guidance by Surface-Relief Grating Waveguides for Oblique Propagation

    Keiji MATSUMOTO  Katsu ROKUSHIMA  Jiro YAMAKITA  

     
    PAPER-Optical Device

      Page(s):
    1498-1504

    An analysis of wave guidance by surface-relief grating waveguides is presented for the case of oblique propagation. This analysis is based on the first-order differential equations expressing the coupling of the space harmonics and an improved differential method is applied to solve the equations in the grating region with arbitrary profile. The propagation constants are calculated for isotropic grating waveguids with sinusoidal profile and the calculated results indicate that the accurate solutions can be obtained by increasing the number of expansion terms and the number of segments. Moreover, this method is extended to the case of the analysis of obliquely propagating waves and it is shown that peculiar leaky waves and stop bands appear owing to the coupling between TE and TM waves.

  • Resonance Absorptions in a Metal Grating with a Dielectric Overcoating

    Toyonori MATSUDA  Yoichi OKUNO  

     
    LETTER-Scattering and Diffraction

      Page(s):
    1505-1509

    Field distributions and energy flows of the surface waves excited in singlelayer-overcoated gratings are evaluated in order to investigate the behavior of the resonance absorption in the grating.

  • Propagation of Nonlinear Waves Guided by Planar Waveguides with Inhomogeneous Refractive-Index Profile

    Yutaka SATOMURA  Yoshinori MUROI  

     
    LETTER-Optical Device

      Page(s):
    1510-1514

    The propagation characteristics of nonlinear TE waves guided by planar optical waveguide whose guiding region has arbitrary inhomogeneous refractive-index profile are investigated theoretically by using the WKB method. The effects of inhomogeneous index profile of a guided region on the propagation characteristics such as the propagation constant and the field distribution are estimated numerically.

  • Regular Section
  • A New Proposal for Inverter Delay Improvement on CMOS/SOI Future Technology

    M.O. LEE  Kunihiro ASADA  

     
    PAPER-Electronic Circuits

      Page(s):
    1515-1522

    High performances of CMOS/SOI inverter by simulations of analytical model, reducing the poly-Si gate thickness (tm), and experiments are verified and proposed. It is shown that the tm and gate oxide thickness(tox) are correlated to gate fringing capacitance, which largely influences on the Propagation Delay Time(TPD). Contributions of gate fringing capacitance to CMOS/SIMOX inverter time delay in deep submicrometer gate devices are propounded. Measurements of the fifty-one stage ring oscillator's TPDs are completed for comparison with analytical model. Simulation results by the analytical model, including Time-Dependent Gate Capacitance (TDGC) model, agree well with the experimental results at the same conditions. Simulation results are also predicted that SOI technology is promising for speed enhancement by reducing the poly-Si gate thickness, while the tox remains constant. It is concluded that the TPDs by reducing the tm to zero are improved up to about two times faster than typically fabricated ring oscillator at 350 nm of the tm in deep-submicrometer gate CMOS/SIMOX inverters at room temperature.

  • Second Harmonic Generation in Poled Polymer Films Doped with α-Cyano Unsaturated Carboxylic Acids

    Okihiro SUGIHARA  Yasuhiko HIRANO  Naomichi OKAMOTO  Yutaka TAKETANI  

     
    PAPER-Opto-Electronics

      Page(s):
    1523-1528

    Poled polymer films doped with novel nonlinear organic materials, α-cyano unsaturated carboxylic acid (α-CUCA) derivatives, are prepared. Linear and second-order nonlinear optical properties are investigated. It is found that as the value of hyperpolarizability of the derivatives increases, the second-order nonlinear susceptibility of the film increases. Cerenkov-type second harmonic generation (SHG) of Nd: YAG laser is realized in a poled polymer waveguide doped with the α-CUCA material with a slight absorption at doubled wavelength.

  • Temperature Dependence of Signal Gain in Er3-Doped Optical Fiber Amplifiers Pumped by 0.8µm Band GsAlAs Laser Diodes

    Makoto YAMADA  Makoto SHIMIZU  Kaoru YOSHINO  Masaharu HORIGUCHI  

     
    LETTER-Opto-Electronics

      Page(s):
    1529-1532

    This letter reports in detail on the temperature-dependent signal gain characteristics of Er3+-doped optical fiber amplifiers at signal wavelengths of 1.536µm and 1.552µm. The amplifiers were pumped at 0.825µm in a temperature range of 40 to 200. The signal gain for optimum length at both wavelengths stops increasing and begins to decrease at about 80. In the temperature region below 80, both signal gains increase with fiber temperature for fibers of optimum length or less. A temperature independent length aroud the optimum length is observed from 80 to 200 for both signal wavelengths. Theoretically, the temperature dependence of the signal gain characteristics rerults from the changes in fluorescence, absorption, GSA and ESA cross sections.

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