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排序方式: 共有867条查询结果,搜索用时 15 毫秒
11.
Yamazaki E. Inuzuka F. Yonenaga K. Takada A. Koga M. 《Photonics Technology Letters, IEEE》2007,19(1):9-11
A scheme that compensates the waveform distortion induced by nonlinear interchannel crosstalk such as four-wave mixing (FWM) and cross-phase modulation as well as self-phase modulation in phase-locked wavelength-division-multiplexing transmission systems is proposed. Reduction of FWM-induced waveform distortion by controlling the phase relationship between neighbouring channels and its cancellation by precompensation is successfully demonstrated 相似文献
12.
Takada M Yamaguchi H Kitamura H Uchihori Y Fujitaka K 《Radiation protection dosimetry》2002,99(1-4):391-392
Microdosimetric measurements of 19, 32, 43, 55, and 65 MeV protons were carried out with the A-150-walled low pressure proportional counter (LPPC). The spectra are deconvoluted into three components, which are energy loss by directly incident protons, secondary electrons, and scattered protons and heavy charged particle (including protons) produced by proton nuclear reactions with the TE wall. Dose-mean lineal energies of protons are large as usual, because larger lineal energies by proton reaction events are affected. 相似文献
13.
Microdosimetry of neutron field for boron neutron capture therapy at Kyoto university reactor 总被引:1,自引:0,他引:1
Endo S Onizuka Y Ishikawa M Takada M Sakurai Y Kobayashi T Tanaka K Hoshi M Shizuma K 《Radiation protection dosimetry》2004,110(1-4):641-644
Microdosimetric single event spectrum in a human body simulated by an acrylic phantom has been measured for the clinical BNCT field at the Kyoto University Reactor (KUR). The recoil particles resulting from the initial reaction and subsequent interactions, namely protons, electrons, alpha particles and carbon nuclei are identified in the microdosimetric spectrum. The relative contributions to the neutron dose from proton, alpha particles and carbon are estimated to be about 0.9, 0.07 and 0.3, respectively, four depths between 5 and 41 mm. We estimate that the dose averaged lineal energy, yD decreased with depth from 64 to 46 keV microm(-1). Relative biological effectiveness (RBE) of this neutron field using a response function for the microdosimetric spectrum was estimated to decrease from 3.6 to 2.9 with increasing depth. 相似文献
14.
Tsujimura N Yoshida T Takada C Momose T Nunomiya T Aoyama K 《Radiation protection dosimetry》2007,126(1-4):261-264
A new neutron-measuring instrument that is intended to measure a neutron personal dose equivalent, H(p)(10) was developed. This instrument is composed of two parts: (1) a conventional moderator-based neutron dose equivalent meter and (2) a neutron shield made of borated polyethylene, which covers a backward hemisphere to adjust the angular dependence. The whole design was determined on the basis of MCNP calculations so as to have response characteristics that would generally match both the energy and angular dependencies of H(p)(10). This new instrument will be a great help in assessing the reference values of neutron H(p)(10) during field testing of personal neutron dosemeters in workplaces and also in interpreting their readings. 相似文献
15.
Abstract We consider two-stage estimation for a fixed-span confidence region about a linear function of mean vectors from π i : N p (μ i , Σ i ), i = 1,…,k (≥2), when Σ i 's have some structures. The purpose of this article is to investigate asymptotic efficiency of the estimation up to the second order in terms of the sample size. An adjustment of the design constant and a proper choice of the initial sample size appearing in the two-stage estimation are proposed to have asymptotic second-order efficiency. Some simulations are carried out to see moderate sample size performances of the proposed two-stage estimation. An example is given for a demonstration. 相似文献
16.
17.
Toshiro Sakai Yasuhiro Tanaka Tadashi Fukao Tatsuo Takada Takashi Maeno 《Electrical Engineering in Japan》2008,162(2):10-19
Most of the breakdowns in an electric power system are caused by lightning to the tower used for high‐voltage transmission wires. To avoid accidents due to lightning, it would be desirable to develop a measurement system for the spatial electric field distribution around the tower. We have developed a new system that can measure the electric field around the steel tower for electric power transmission by using an optical electric sensor. In conventional methods, the sensor is generally illuminated by light transmitted by optical fibers. On the other hand, the new measurement system illuminates the Pockels sensor directly by using a laser to measure the far electric field. Furthermore, our newly proposed feedback system makes it possible to measure the spatial electric field without concern for the change of Pockels sensor's operation point influenced by temperature change. This system is applicable as a remote sensing system to monitor the spatial electric field around a high‐voltage transmission line. © 2007 Wiley Periodicals, Inc. Electr Eng Jpn, 162(2): 10–19, 2008; Published online in Wiley InterScience ( www.interscience.wiley.com ). DOI 10.1002/eej.20552 相似文献
18.
19.
Hayato Takasago Eishi Gofuku Mitsuyuki Takada Yoshiyuki Morihiro 《Journal of Electronic Materials》1989,18(5):651-655
When electric resistivity of Thick Film Resistor (TFR) is adjusted to the desired value, laser beam is irradiated onto the
resistor material so that a part of the resistor material is instantaneously vaporized and cut away. This conventional laser
trimming method to adjust the resistivity of TFRs is an indispensable technique for manufacturing elec-tronic devices such
as hybrid ICs. A peculiar phenomena was revealed by us, that is, when specially selected pulse laser beams were irradiated
to TFR, the TFR was surface modified without cutting grooves, and then resistivity of the TFR was decreased. We completed
the advanced laser process to apply this peculiar phenomena. 8 By comparing with conventional trimming processes, we can show
prominent features of the advanced process, for example, resistivity of fine size TFR (300 micrometers-width and under) can
be easily controlled. The decrease in resistivity of the TFR is considered to result from the decrease in specific resistivity
of glass in the TFR. Because it is considered that the glass in the TFR is heavily doped with ruthenium impurities during
the surface modification due to results of morphology observations and x-ray diffraction analysis. We have applied this advanced
laser process to fine size TFR (300 micrometers-width), and developed high density hybrid ICs. 相似文献
20.
Picosecond optical pulse compression characteristics of chirped pulses from gain-switched distributed feedback-laser diodes (DFB-LD) transmitting through highly dispersive media are studied theoretically and experimentally. It is clarified theoretically that gain-switched chirped pulses can be compressed to about a 0.7-time bandwidth product by normal dispersion of the dispersive media and that the optimum dispersion value to obtain a minimum compressed pulse is proportional to the square of original pulsewidth. Through a dispersion, shifted single-mode fiber with -48-ps/nm normal dispersion at a 1.3-μm wavelength, gain-switched 30-ps (FWHM) pulses from a directly modulated 1.3-μm DFB-LD at a 4.4-GHz repetition rate have been successfully compressed to 6.4-ps optical pulses with a 0.86-time bandwidth product. Experimental results agree with the theoretical analysis. 相似文献