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1.
韩冰  吕衍秋  吴小利  李雪  龚海梅 《激光与红外》2006,36(11):1032-1035
利用分子束外延(MBE)方法生长的掺杂InGaAs吸收层PIN InP/InGaAs/InP双异质结外延材料,通过台面制作、硫化后覆盖聚酰亚胺钝化、电极生长等工艺,制作了台面构造的256×1正照射InGaAs探测器阵列。测试了器件的I-V特性与响应光谱,得出器件的暗电流Id、零偏压电阻R0、G因子;通过信号和噪声的测试,计算出了在278K时的平均峰值探测率为1.33×1012cmHz1/2W-1。256元InGaAs探测器阵列与CTIA结构L128读出电路相互连,经封装后成功制备256×1线列InGaAs短波红外焦平面,在室温(300K)时测得256元响应信号,其响应不均匀性为19.3%。  相似文献   

2.
报道了用分子束外延(MBE)方法生长掺杂InGaAs的PIN InP/InGaAs/InP外延材料,通过台面制作、硫化处理、ZnS/聚酰亚胺双层钝化、电极生长等工艺,制备了256元正照射台面InGaAs线列探测器,278K时平均峰值探测率为1.33×1012 cmHz1/2W-1.测试了不同钝化方式探测器典型Ⅰ-Ⅴ曲线和探测率,硫化可以减小探测器暗电流,ZnS/聚酰亚胺双层钝化效果最好.并对ZnS/聚酰亚胺双层钝化InGaAs探测器进行了电子辐照研究.256元InGaAs探测器阵列与两个CTIA结构128读出电路互连并封装,在室温时,焦平面响应率不均匀性为19.3%.成功实现了室温扫描成像,图像比较清晰.  相似文献   

3.
首先介绍了InGaAs台面探测器的研究进展,然后为了验证利用台面结制作背照射器件的可行性,利用分子束外延(MBE)方法生长的掺杂InGaAs吸收层PIN InP/InGaAs/InP双异质结外延材料,通过台面制作、钝化、电极生长、背面抛光等工艺,制备了8元台面InGaAs探测器,并测试了正照射和背照射时,器件的Ⅰ-Ⅴ、信号和响应光谱.测试结果表明,正照射和背照射情况下,器件的响应信号差别不大,正照射下器件的平均峰值探测率为4.1×1011 cm·Hz1/2·W-1,背照射下器件的平均峰值探测率为4.0×1011 cm·Hz1/2·W-1,但背照射情况下器件的响应光谱在短波方向有更好的截止.  相似文献   

4.
为了验证利用台面结制作背照射器件的可行性,利用分子束外延(MBE)方法生长的掺杂InGaAs吸收层PIN InP/InGaAs/InP双异质结外延材料,通过台面制作、钝化、电极生长、背面抛光等工艺,制备了8元台面InGaAs探测器,并测试了正照射和背照射时,器件的I-V、信号和响应光谱.测试结果表明,正照射和背照射情况下,器件的响应信号差别不大,正照射下器件的平均峰值探测率为4.13×1011cmHz1/2W-1,背照射下器件的平均峰值探测率为4×1011cmHz1/2W-1,但背照射情况下器件的响应光谱在短波方向有更好的截止.  相似文献   

5.
采用分子束外延方法生长的PIN型InP/InGaAs/InP双异质结材料制备了正照射256×1元近红外探测器,并与128×1奇偶两路读出电路互连,制备了近红外256×1元焦平面探测器.针对近红外InGaAs焦平面探测器中的无效像元问题,通过光学显微镜、扫描电镜和电学测试将无效像元进行分类,并分析了无效像元产生的原因.研...  相似文献   

6.
背照结构的InGaAs焦平面器件,受其衬底InP的阻挡,对可见光无响应.针对宽光谱探测的应用需求,研制了 一种像元间距为25 μm、阵列规模为640×512的InGaAs焦平面探测器.通过在倒焊互连工艺后,对器件进行干法、湿法相结合的减薄抛光工艺,所得探测器阵列(PDA)芯片最终保留厚度约5 μm,实现了对400~1 700 nm光谱范围内可见光和短波红外光的同时响应,峰值探测率高于8×1012 cm·Hz1/2·W-1,峰值外量子效率超过85%,响应非均匀性优于6%,器件成像效果良好.  相似文献   

7.
首先介绍了InGaAs台面探测器的研究进展,然后为了验证利用台面结制作背照射器件的可行性,利用分子束外延(MBE)方法生长的掺杂InGaAs吸收层PIN InP/InGaAs/InP双异质结外延材料,通过台面制作、钝化、电极生长、背面抛光等工艺,制备了8元台面InGaAs探测器,并测试了正照射和背照射时,器件的I-V、信号和响应光谱。测试结果表明,正照射和背照射情况下,器件的响应信号差别不大,正照射下器件的平均峰值探测率为4.1×1011cm·Hz1/2·W-1,背照射下器件的平均峰值探测率为4.0×1011cm·Hz1/2·W-1,但背照射情况下器件的响应光谱在短波方向有更好的截止。  相似文献   

8.
报道了128×128元InAs/GaSb Ⅱ类超晶格红外焦平面阵列探测器的研究成果.实验采用分子束外延技术在GaSb衬底上生长超晶格材料.红外吸收区结构为13 ML(InAs)/9 ML(GaSb),器件采用PIN结构,焦平面阵列光敏元大小为40μm×40μm.通过台面形成、侧边钝化和金属电极生长,以及与读出电路互连等工艺,得到了128×128面阵长波焦平面探测器.在77 K时测试,器件的100%截止波长为8μm,峰值探测率6.0×109cmHz1/2W-1.经红外焦平面成像测试,探测器可得到较为清晰的成像.  相似文献   

9.
报道了128×128 AlGaAs/GaAs量子阱红外焦平面探测器阵列的设计和制作.采用金属有机化学气相淀积外延技术生长外延材料,并在GaAs集成电路工艺线上完成工艺制作.为得到器件参数,设计制作了台面尺寸为300μm×300μm的大面积测试器件;77K下2V偏压时暗电流密度为1.5×10-3A/cm2;80K工作温度下,器件峰值响应波长为8.4μm,截止波长为9μm,黑体探测率DB 为3.95×108(cm·Hz1/2)/W.将128×128元 AlGaAs/GaAs量子阱红外焦平面探测器阵列芯片与相关CMOS读出电路芯片倒装焊互连,在80K工作温度下实现了室温环境目标的红外热成像,盲元率小于1%.  相似文献   

10.
田招兵  张永刚  李爱珍  顾溢 《半导体光电》2006,27(5):519-521,542
采用气态源分子束外延(GSMBE)生长技术结合常规半导体工艺制成了正进光台面型8元In0.53Ga0.47As/InP光伏探测器阵列,并对其特性进行了测量,结果表明GSMBE生长的材料具有很好的均匀性.探测器阵列在室温下具有良好的性能,在-10 mV反偏下探测器的暗电流约173 pA,单元间的相对标准差为1.3%;器件的峰值探测率为4.7×1011 cm·Hz1/2/W,单元间的相对标准差为0.9%.  相似文献   

11.
High purity organic-tantalum precursors for thin film ALD TaN were synthesized and characterized.Vapor pressure and thermal stability of these precursors were studied.From the vapor pressure analysis,it was found that TBTEMT has a higher vapor pressure than any other published liquid TaN precursor,including TBTDET,TAITMATA,and IPTDET.Thermal stability of the alkyl groups on the precursors was investigated using a 1H NMR technique.The results indicated that the tertbutylimino group is the most stable group on TBTDET and TBTEMT as compared to the dialkylamido groups.Thermal stability of TaN precursors decreased in the following order:TBTDET > PDMAT > TBTEMT.In conclusion,precursor vapor pressure and thermal stability were tuned by making slight variations in the ligand sphere around the metal center.  相似文献   

12.
In order to diagnose the laser-produced plasmas, a focusing curved crystal spectrometer has been developed for measuring the X-ray lines radiated from a laser-produced plasmas. The design is based on the fact that the ray emitted from a source located at one focus of an ellipse will converge on the other focus by the reflection of the elliptical surface. The focal length and the eccentricity of the ellipse are 1350 mm and 0.9586, respectively. The spectrometer can be used to measure the X- ray lines in the wavelength range of 0.2-0.37 nm, and a LiF crystal (200) (2d = 0.4027 nm) is used as dispersive element covering Bragg angle from 30° to 67.5°. The spectrometer was tested on Shengnang- Ⅱ which can deliver laser energy of 60-80 J/pulse and the laser wavelength is 0.35 μm. Photographs of spectra including the 1 s2p ^1P1-1s^2 ^1S0 resonance line(w), the 1s2p ^3P2-1s^2 1S0 magnetic quadrupole line(x), the 1s2p ^3P1-1 s^2 ^1S0 intercombination lines(y), the 1 s2p ^3S~1-1 s^2 ^1S0 forbidden line(z) in helium-like Ti Ⅹ Ⅺ and the 1 s2s2p ^2P3/2-1 s622s ^2S1/2 line(q) in lithium-like Ti Ⅹ Ⅹhave been recorded with a X-ray CCD camera. The experimental result shows that the wavelength resolution(λ/△ 2) is above 1000 and the elliptical crystal spectrometer is suitable for X-ray spectroscopy.  相似文献   

13.
This paper reviews our recent development of the use of the large-scale pseudopotential method to calculate the electronic structure of semiconductor nanocrystals, such as quantum dots and wires, which often contain tens of thousands of atoms. The calculated size-dependent exciton energies and absorption spectra of quantum dots and wires are in good agreement with experiments. We show that the electronic structure of a nanocrystal can be tuned not only by its size,but also by its shape. Finally,we show that defect properties in quantum dots can be significantly different from those in bulk semiconductors.  相似文献   

14.
An improving utilization and efficiency of critical equipments in semiconductor wafer fabrication facilities are concerned. Semiconductor manufacturing FAB is one of the most complicated and cost sensitive environments. A good dispatching tool will make big difference in equipment utilization and FAB output as a whole. The equipment in this paper is In-Line DUV Scanner. There are many factors impacting utilization and output on this equipment group. In HMP environment one of the issues is changing of reticule in this area and idle counts due to load unbalance between equipments. Here we'll introduce a rule-based RTD system which aiming at decreasing the number of recipe change and idle counts among a group of scanner equipment in a high-mixed-products FAB.  相似文献   

15.
The epi material growth of GaAsSb based DHBTs with InAlAs emitters are investigated using a 4 × 100mm multi-wafer production Riber 49 MBE reactor fully equipped with real-time in-situ sensors including an absorption band edge spectroscope and an optical-based flux monitor. The state-of-the-art hole mobilities are obtained from 100nm thick carbon-doped GaAsSb. A Sb composition variation of less than ± 0.1 atomic percent across a 4 × 100mm platen configuration has been achieved. The large area InAlAs/GaAsSb/InP DHBT device demonstrates excellent DC characteristics,such as BVCEO>6V and a DC current gain of 45 at 1kA/cm2 for an emitter size of 50μm × 50μm. The devices have a 40nm thick GaAsSb base with p-doping of 4. 5 × 1019cm-3 . Devices with an emitter size of 4μm × 30μm have a current gain variation less than 2% across the fully processed 100mm wafer. ft and fmax are over 50GHz,with a power efficiency of 50% ,which are comparable to standard power GaAs HBT results. These results demonstrate the potential application of GaAsSb/InP DHBT for power amplifiers and the feasibility of multi-wafer MBE for mass production of GaAsSb-based HBTs.  相似文献   

16.
By using the expansion of the aperture function into a finte sum of complex Gaussian functions, the corresponding analytical expressions of Hermite-cosh-Gaussian beams passing through annular apertured paraxially and symmetrically optical systems written in terms of ABCD matrix were derived, and they could reduce to the cases with squared aperture. In a similar way, the corresponding analytical expressions of cosh-Gaussian beams through annular apertured ABCD matrix were also given. The method could save more calculation time than that by using the diffraction integral formula directly.  相似文献   

17.
We calculate the Langevin noise sources of self-pulsation laser diodes, analyze the effects of active region noise and saturable-absorption region noise on the power fluctuation as well as period fluctuation, and propose a novel method to restrain the noise effects. A visible SIMULINK model is established to simulate the system, The results indicate that the effects of noise in absorption region can be ignored; that with the increase of DC injecting current, the noise effects enhance power jitter, and nevertheless, the period jitter is decreased; and that with external sinusoidal current modulating the self-pulsation laser diode, the noise-induced power jitter and period jitter can be suppressed greatly. This work is valuable for clock recovery in all-optical network.  相似文献   

18.
Distributed polarization coupling in polarization-maintaining fibers can be detected by using a white light Michelson interferometer. This technique usually requires that only one polarization mode is excited. However, in practical measurement, the injection polarization direction could not be exactly aligned to one of the principal axes of the PMF, so the influence of the polarization extinction ratio should be considered. Based on the polarization coupling theory, the influence of the incident polarization extinction on the measurement result is evaluated and analyzed, and a method for distributed polarization coupling detection is developed when both two orthogonal eigenmodes are excited.  相似文献   

19.
Large-scale synthesis of single-crystal CdSe nanoribbons is achieved by a modified thermal evaporation method, in which two-step-thermal-evaporation is used to control CdSe sources' evaporation. The synthesized CdSe nanoribbons are usually several micrometers in width, 50 nm in thickness, and tens to several hundred micrometers in length. Studies have shown that high-quality CdSe nanoribbons with regular shapes can be obtained by this method. Room-temperature photolumines-cence indicates that the lasing emission at 710 nm has been observed under optical pumping (266 nm) at power densities of 25-153 kW/cm^2. The full width half maximum (FWHM) of the lasing mode is 0.67 nm  相似文献   

20.
Call for Papers     
正Communications—VLSI Researches and industries of telecommunications have been growing rapidly in the last 20 years and will keep their high growing pace in the next decade.The involved researches and developments cover mobile communications,highway and last-mile broadband communication,domain specific communications,and emerging D2D M2M communications.Radio communication steps into its  相似文献   

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