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121.
Kenji Uchida Masahiko Kawata Tao Yang Shigeo Goto Tomoyoshi Mishima Atsuko Niwa Jun Gotoh 《Journal of Electronic Materials》1999,28(3):246-251
We have examined how a growth interruption, caused by closing group-III sources, affects the crystalline quality of InGaN/GaN
quantum-well (QW) structures grown by metalorganic vapor phase epitaxy. The QW samples were characterized by their photoluminescence
(PL), and by atomic force microscopy (AFM), transmission electron microscopy (TEM), and energy dispersive x-ray (EDX) microanalysis.
The PL peak wavelength was strongly dependent on the duration of the growth interruption and on the number of QW layers. AFM
measurements revealed that the size of the open hexagonally shaped pits in the QW structures increased dramatically as the
interruption duration was lengthened. Through TEM and EDX microanalysis, we found that the formation of these hexahedronal
pits, formed due to the growth interruption, causes a large fluctuation in the In composition, especially around the pits,
and the presence of such pits in an underlying QW layer strongly affects the In incorporation into the upper QW layers, leading
to significant growth-rate variation in an InGaN QW layer and red-shifting of the PL spectra when a multiple-QW structure
is grown. 相似文献
122.
Koichiro Ishibashi Hisayuki Higuchi Toshinobu Shimbo Kunio Uchiyama Kenji Shiozawa Naotaka Hashimoto Shuji Ikeda 《Analog Integrated Circuits and Signal Processing》1999,20(2):85-94
There are various kinds of analog CMOS circuits in microprocessors. IOs, clock distribution circuits including PLL, memories are the main analog circuits. The circuit techniques to achieve low power dissipation combined with high performance in newest prototype chip in the Super H RISC engines are described. A TLB delay can be decreased by using a CAM with a differential amplifier to generate the match signal. The accelerator circuit also helps to speed up the TLB circuit, enabling single-cycle operation. A fabricated 96-mm2 test chip with the super H architecture using 0.35-m four metal CMOS technology is capable of 167-MHz operation at 300 Dhrystone MIPS with 2.0-W power dissipation. 相似文献
123.
Temperature rises in the human head for portable telephones were computed with an anatomically based head model at 900 MHz and 1.5 GHz. The specific absorption rate (SAR) in the human head was determined using the finite-difference time-domain (FDTD) method, while a bioheat equation was numerically solved also using the FDTD method. The portable telephone was modeled by a quarter-wavelength monopole antenna on a dielectric covered metal box. The source geometries considered were the telephone barely touching the ear and the telephone pressing the ear, both having a vertical alignment at the side of the head. The antenna output power was set to be consistent with the portable telephones of today: 0.6 W at 900 MHz and 0.27 W at 1.5 GHz. Computed results show that a phone time of 6-7 min yields a temperature rise of approximately 90% of the steady-state value. Application of the ANSZ/IEEE safety guidelines restricting the 1-g-averaged spatial peak SAR to 1.6 W/kg results in the maximum temperature rise in the brain of 0.06°C, and application of the ICNIRP/Japan safety guidelines restricting the 10-g-averaged spatial peak SAR to 2 W/kg results in the maximum temperature rise in the brain of 0.11°C, both at 900 MHz and 1.5 GHz 相似文献
124.
Toyoda S. Kaneko A. Ooba N. Yamada H. Kurihara T. Okamoto K. Imamura S. 《Photonics Technology Letters, IEEE》1999,11(9):1141-1143
A wavelength tunable optical filter is a beneficial optical component for dense wavelength-division-multiplexed systems. We report a high-performance polymeric arrayed-waveguide grating (AWG)-based tunable filter made of cross-linked silicone and operating around 1.55 μm. This filter exhibited a TE-TM polarization shift of <0.03, a crosstalk of <-35 dB, an insertion loss of <3 dB, and an 8.8-nm tuning range in the 25°C-75°C temperature region 相似文献
125.
126.
Transport-Coefficient Dependence of Current-Induced Cooling Effect in a Two-Dimensional Electron Gas
Naomi Hirayama Akira Endo Kazuhiro Fujita Yasuhiro Hasegawa Naomichi Hatano Hiroaki Nakamura Ryōen Shirasaki Kenji Yonemitsu 《Journal of Electronic Materials》2012,41(6):1535-1539
The dependence of the current-induced cooling effect on the electron mobility??? e is explored for a two-dimensional electron gas (2DEG) subjected to a perpendicular magnetic field. We calculate the distributions of the electrochemical potentials and the temperatures under a magnetic field, fully taking account of thermoelectric and thermomagnetic phenomena. Whereas the electrochemical potential and the electric current remain qualitatively unchanged, the temperature distribution exhibits drastic mobility dependence. The lower-mobility system has cold and hot areas at opposite corners, which results from the heat current brought about by the Ettingshausen effect in the vicinity of the adiabatic boundaries. The cooling effect is intensified by an increase in??? e. Intriguingly, the cold and hot areas change places with each other as the mobility??? e is further increased. This is because the heating current on the adiabatic edges due to the Righi?CLeduc effect exceeds that due to the Ettingshausen effect in the opposite direction. 相似文献
127.
Yutaka Hasegawa Ryohei Harada Kazuki Tokuda Kimihiro Kimura Hideo Ogawa Toshikazu Onishi Atsushi Nishimura Johnson Han Makoto Inoue 《Journal of Infrared, Millimeter and Terahertz Waves》2017,38(5):638-652
A new stepped septum-type waveguide circular polarizer (SST-CP) was developed to operate in the 230 GHz band for radio astronomy, especially submillimeter-band VLBI observations. For previously reported SST-CP models, the 230 GHz band is too high to achieve the design characteristics in manufactured devices because of unexpected machining errors. To realize a functional SST-CP that can operate in the submillimeter band, a new method was developed, in which the division surface is shifted from the top step of the septum to the second step from the top, and we simulated the expected machining error. The SST-CP using this method can compensate for specified machining errors and suppress serious deterioration. To verify the proposed method, several test pieces were manufactured, and their characteristics were measured using a VNA. These results indicated that the insertion losses were approximately 0.75 dB, and the input return losses and the crosstalk of the left- and right-hand circular polarization were greater than 20 dB at 220–245 GHz on 300 K. Moreover, a 230 GHz SST-CP was developed by the proposed method and installed in a 1.85-m radio telescope receiver systems, and then had used for scientific observations during one observation season without any problems. These achievements demonstrate the successful development of a 230 GHz SST-CP for radio astronomical observations. Furthermore, the proposed method can be applicable for observations in higher frequency bands, such as 345 GHz. 相似文献
128.
Yuansheng Tang Fujiwara T. Kasami T. 《IEEE transactions on information theory / Professional Technical Group on Information Theory》2002,48(8):2401-2405
The generalized minimum distance (GMD) and Chase (1972) decoding algorithms are some of the most important suboptimum bounded distance decoding algorithms for binary linear block codes over an additive white Gaussian noise (AWGN) channel. We compute the limitation of the ratio between the probability of decoding error for the GMD or any one of the Chase decoding algorithms and that of the maximum-likelihood (ML) decoding when the signal-to-noise ratio (SNR) approaches infinity. If the minimum Hamming distance of the code is greater than 2, the limitation is shown to be equal to 1 and thus the GMD and Chase decoding algorithms are asymptotically optimum. 相似文献
129.
Ali Gooya Hongen Liao Kiyoshi Matsumiya Ken Masamune Yoshitaka Masutani Takeyoshi Dohi 《IEEE transactions on image processing》2008,17(8):1295-1312
In this paper, a level-set-based geometric regularization method is proposed which has the ability to estimate the local orientation of the evolving front and utilize it as shape induced information for anisotropic propagation. We show that preserving anisotropic fronts can improve elongations of the extracted structures, while minimizing the risk of leakage. To that end, for an evolving front using its shape-offset level-set representation, a novel energy functional is defined. It is shown that constrained optimization of this functional results in an anisotropic expansion flow which is usefull for vessel segmentation. We have validated our method using synthetic data sets, 2-D retinal angiogram images and magnetic resonance angiography volumetric data sets. A comparison has been made with two state-of-the-art vessel segmentation methods. Quantitative results, as well as qualitative comparisons of segmentations, indicate that our regularization method is a promising tool to improve the efficiency of both techniques. 相似文献
130.
Kan‐Hua Lee Kenji Araki Li Wang Nobuaki Kojima Yoshio Ohshita Masafumi Yamaguchi 《Progress in Photovoltaics: Research and Applications》2016,24(10):1310-1318
The paper presents a quantitative approach to the investigation and comparison of the material qualities of III–V on silicon (III–V/Si) solar cells by using external radiative efficiencies. We use this analysis to predict the limiting efficiencies and evaluate the criteria of material quality in order to achieve high‐efficiency III–V/Si solar cells. This result yields several implications for the design of high‐efficiency III–V/Si solar cells. Copyright © 2016 John Wiley & Sons, Ltd. 相似文献