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21.
In the construction of a large area neutron detector(neutron wall)that is used to detect neutrons at GeV energies,the performances of all the sampling paddle modules prepared for the neutron wall areinvestigated with a specially designed test bench.Tested by cosmic rays,an average intrinsic time resolution of 222.5 ps is achieved at the center of the modules.The light attenuation length and the effective speed of the light in the module are also investigated.  相似文献   
22.
LIANG Yu-Tie  MAO Ya-Jun  YOU Zheng-Yun  LI Wei-Dong  BIAN Jian-Ming  CAO Guo-Fu  CAO Xue-Xiang  CHEN Shen-Jian  DENG Zi-Yan  FU Cheng-Dong  GAO Yuan-Ning  HAN Lei  HAN Shao-Qing  HE Kang-Lin  HE Miao  HU Ji-Feng  HU Xiao-Wei  HUANG Bin  HUANG Xing-Tao  JIA Lu-Kui  JI Xiao-Bin  LI Hai-Bo  LIU Bei-Jiang  LIU Chun-Xiu  LIU Huai-Min  LIU Ying  LIU Yong  LUO Tao  LU Qi-Wen  MA Qiu-Mei  MA Xiang  MAO Ze-Pu  MO Xiao-Hu  NING Fei-Peng  PING aong-Gang  QIU Jin-Fa  SONG Wen-Bo  SUN Sheng-Sen  SUN Xiao-Dong  SUN Yong-Zhao  TIAN Hao-Lai  WANG Ji-Ke  WANG Liang-Liang  WEN Shuo-Pin  WU Ling-Hui  WV Zhi  XIE Yu-Guang  XU Min  YAN Jie  YAN Liang  YAO Jian  YUAN Chang-Zheng  YUAN Ye  ZHANG Chang-Chun  ZHANG Jian-Yong  ZHANG Lei  ZHANG Xue-Yao  ZHANG Yao  ZHENG Yang-Heng  ZHU Yong-Sheng  ZOU Jia-Heng 《中国物理C(英文版)》2009,33(7)
Cosmic-ray data of 90 M events have been collected and used for calibration, alignment as well as detector tuning. A special tracking algorithm for the BESⅢ muon counter is developed and verified with Monte-Carlo simulation and then further confirmed with the cosmic-ray data. The obtained strip resolutions are in good agreement with the design values. A new alignment approach for the BESⅢ muon counter is confirmed with the cosmic-ray data and proposed to be used in future analysis of experimental data.  相似文献   
23.
Time-resolved photoluminescence (TRPL) was applied to investigate the transient process in GaP1-xNx (x = 0.12%) alloy. The filling, transferring and decay processes among nitrogen pairs are directly observed. The NN4 pair, either not present or only a small obscure peak under a proper excitation condition in the steady-state photoluminescence spectrum, is well resolved by TRPL.  相似文献   
24.
We characterize the perimeter-minimizing double bubbles on all flat two-tori and, as corollaries, on the flat infinite cylinder and the flat infinite strip with free boundary. Specifically, we show that there are five distinct types of minimizers on flat two-tori, depending on the areas to be enclosed.

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25.
Alan H. Schoenfeld 《ZDM》2011,43(4):457-469
There is now robust evidence that teachers’ and others’ in-the-moment decision making can be modeled and explained as a function of the following: their knowledge and other intellectual, social, and material resources; their goals; and their orientations (their beliefs, values, and preferences). The role of beliefs as they affect teachers’ behavior can thus be described at a level of mechanism—but of necessity in interaction with resources and goals. This paper outlines and exemplifies how resources, goals, and orientations shape teachers’ behavior. It indicates how they are interconnected, and why their evolution is necessarily slow. It then suggests how these understandings can be used as a foundation for mathematics teachers’ professional development, and describes how they are being used to shape a course of participatory professional development for middle school mathematics teachers.  相似文献   
26.
Optical properties of Al nanogrids of different pitches and gaps were investigated both theoretically and experimentally. Three-dimensional finite-difference time-domain simulation predicted that surface plasmons at the air/Al interface would enhance ultraviolet transmission through the subwavelength gaps of the nanogrid, making it an effective electrode on GaN-based photodetectors to compensate for the lack of transparent electrode and high p-type doping. The predicted transmission enhancement was verified by confocal scanning optical microscopy performed at 365 nm. The quality of the nanogrids fabricated by electron-beam lithography was verified by near-field scanning optical microscopy and scanning electron microscopy. Based on the results, the pitch and gap of the nanogrids can be optimized for the best trade-off between electrical conductivity and optical transmission at different wavelengths. Based on different cutoff wavelengths, the nanogrids can also double as a filter to render photodetectors solar-blind.  相似文献   
27.
    
Ohne Zusammenfassung  相似文献   
28.
The Zeeman splitting of a localized single spin can be used to construct a highly sensitive magnetometer offering almost atomic spatial resolution. While sub-μT sensitivity can be obtained in principle using pulsed techniques and long measurement times, a fast and easy method without laborious data postprocessing is desirable for a scanning-probe approach with high spatial resolution. In order to measure the resonance frequency in real time, we applied a field-frequency lock to the optically detected magnetic resonance signal of a single electron spin in a nanodiamond. We achieved a sampling rate of up to 100 readings per sec with a sensitivity of 6 μT/sqrt[Hz]. Images of the field distribution around a magnetic wire were acquired with ~30 μT resolution and 4096 submicron sized pixels in 10 min. The response of several spins was used to reconstruct the field orientation.  相似文献   
29.
We report the fabrication and characterization of highly responsive ZnMgO‐based ultraviolet (UV) photodetectors in the metal–semiconductor–metal (MSM) configuration for solar‐blind/visible‐blind optoelectronic application. MSM devices were fabricated from wurtzite Zn1–xMgx O/ZnO (x ~ 0.44) thin‐film heterostructures grown on sapphire (α‐Al2O3) substrates and w‐Zn1–xMgx O (x ~ 0.08), grown on nearly lattice‐matched lithium gallate (LiGaO2) substrates, both by radio‐frequency plasma‐assisted molecular beam epitaxy (PAMBE). Thin film properties were studied by AFM, XRD, and optical transmission spectra, while MSM device performance was analyzed by spectral photoresponse and current–voltage techniques. Under biased conditions, α‐Al2O3 grown devices exhibit peak responsivity of ~7.6 A/W at 280 nm while LiGaO2 grown samples demonstrate peak performance of ~119.3 A/W, albeit in the UV‐A regime (~324 nm). High photoconductive gains (76, 525) and spectral rejection ratios (~103, ~104) were obtained for devices grown on α‐Al2O3 and LiGaO2, respectively. Exemplary device performance was ascribed to high material quality and in the case of lattice‐matched LiGaO2 films, decreased photocarrier trapping probability, presumably due to low‐density of dislocation defects. To the best of our knowledge, these results represent the highest performing ZnO‐based photodetectors on LiGaO2 yet fabricated, and demonstrate both the feasibility and substantial enhancement of photodetector device performance via growth on lattice‐matched substrates. (© 2015 WILEY‐VCH Verlag GmbH &Co. KGaA, Weinheim)  相似文献   
30.
It is demonstrated that the microphotoluminescence (μPL) spectrum of a single InAs/GaAs self-assembled quantum dot (QD) undergoes considerable changes when the primary laser excitation is complemented with an additional infrared laser. The primary laser, tuned slightly below the GaAs band gap, provides electron-hole pairs in the wetting layer (WL), as well as excess free electrons from ionized shallow acceptors in the GaAs barriers. An additional IR laser with a fixed energy well below the QD ground state transition generates excess free holes from deep levels in GaAs. The excess electron and hole will experience diffusion separately, due to the time separation between the two events of their generation, to eventually become captured into the QD. Although the generation rates of excess carries are much lower than that of the electron-hole pair generation in the WL, they considerably influence the QD emission at low temperatures. The integrated PL intensity increases by several times as compared to single-laser excitation, and the QD exciton spectrum is redistributed in favor of a more neutral charge configuration. The dependence of the observed phenomenon on the powers of the two lasers and the temperature has been studied and is consistent with the model proposed. The concept of dual excitation could be successfully applied to different low-dimensional semiconductor structures in order to manipulate their charge state and emission intensity. The text was submitted by the authors in English.  相似文献   
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