181 resultados para 343.0146


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The rapid carrier capture and relaxation processes in InAs/GaAs quantum dots were studied at 77K by using a simple degenerate pump-probe technique. A rising process was observed in the transient reflectivity, following the initial fast relaxation associated with GaAs bulk matrix, and this rising process was assigned to be related to the carrier capture from the GaAs barriers to InAs layers. The assignment was modeled using Kramers-Kronig relation. By analyzing the rising process observed in the transient reflectivity, the carrier capture time constants were obtained. The measured capture times decrease with the increase of carrier concentration.

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Proton-implanted n-type Si wafers were annealed at 950 degrees C to achieve novel pn junctions. The novel pn junctions are explained by the combined use of four models. The background (e.g. oxygen impurity) of an Si wafer is suggested to play a key role in creating the novel pn junction.

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The steplike density of states obtained from reflectance-difference spectroscopy demonstrates that ultrathin InAs layers should be regarded as two-dimensional quantum wells rather than isolated clusters, even for the sample with only 1/3 monolayer InAs in (311)-oriented GaAs. The degree of anisotropy is within the intrinsic anisotropy of (311)-oriented ultrathin quantum wells, indicating that there is little structural or strain anisotropy in the InAs islands. (C) 1998 Elsevier Science B.V.

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本文通过LnCl_3·2LiCl (Ln=La, Nd)和等摩尔的CH_3C_5H_4Na在四氢呋喃中于室温反应,得到了一种新的阴离子型配合物[Li(THF)_2]_2 (M-Cl)_4[(η~5-CH_3C_5H_4)Ln·THF] (Ln=La, Nd),对其进行了元素分析,红外光谱和核磁谱的鉴定,并测得了[Li(THF)_2]_2 (M-Cl)_4[(η~5-CH_3C_5H_4)Nd·THF]的X-光晶体结构。晶体属单斜晶系,空间群为P_(21/n),晶脆参数为a=12.130(5),b=17.343(5),c=17.016(5)A,β=108.54(3)°,V=3393.87A~3,E=4,R=0.0505,中心钕原子分别与CH_3Cp~-。THF和四个桥氯配位,形成稳定的八配位的八面体结构。通过[Li(THF)_2]_2(M-Cl)_4[(η~5-CH_3C_5H_4)Nd·THF]与2摩尔的t-BuLi在四氢呋喃和戊烷的混和溶液中反应,分离得到一种新的阴离子型配合物晶体,经元素分析,红外光谱,核磁和水解色质谱的鉴定,证明为[Li(DME)_3][(η~5-CH_3C_5H_4)Nd(t-Bu)_3],此配合物不仅对空气和水汽极为敏感,而且对温度也很敏感,即使在-5 ℃下放置也会逐渐分解,发生β-H消除。我们进一步研究了LnCl_3·2LiCl与2摩尔的C_5H_5Na的四氢呋喃反应液在低温下与等摩尔的CH_3Li乙醚溶液反应,从中分离得到一种新的阴离子型烷基配合物晶体[Li(DME)_3][(η~5-C_5H_5)_3LnCH_3] (Ln=La, Nd)对其进行了元素分析,红外光谱,核磁和水解色质谱的鉴定。此外,从这一反应中还得到另一种副产物,经X-光结构鉴定为[Li(DME)_3]~+{[(η~5-C_5H_5)Nd(M-Cl)_2Nd(η~5-C_5H_5)](M-Cl)_4(M_4-D)[(η~5-C_5H_5)Nd(M-CH_3)_2Nd(η~5-C_5H_5)]}~(2-)[Li(DME)_3]~+。本文还研究了NdCl_3·2LiCl与2倍摩尔的CH_3C_5H_4Na的四氢呋喃反应液和等摩CH_3Li乙醚溶液于-78 ℃下反应,从中分离得到另一种新的阴离子型配合物[Li(DME)_3][(η~5-CH_3C_5H_4)_3NdCH_3]并对其进行了元素分析,红外光谱的鉴定。我们还研究了配合物[Li(DME)_3][(η~5-CH_3C_5H_4)Nd(t-Bu)_3]对苯乙烯的催化聚合活性,发现它可以单独引发苯乙烯聚合,得无规聚苯乙烯。

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用简并激发-探测技术研究了77K温度下InAs/GaAs量子点中载流子快速俘获的弛豫过程。在瞬态反射谱测量中,除观察到与GaAs有关的驰豫过程外(时间常数约为1ps),还观察到一个时间常数为几个至20ps的反射率上升过程。提出了一个物理模型,表明上述上升过程与光致载流子被InAs层快速俘获过程有关,并由此得到载流子的俘获时间,俘获时间随载流子浓度增加而减小。

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将GaAs/AlGaAs多量子阱光探测器、光调制器与GaAs场效应晶体管(FET)混合集成,构成FET-SEED灵巧像元光探测器和光调制器均为反射型自电光效应器件(SEED),光源为量子阱半导体激光器。光输入信号对光输出信号有明显的调制作用,可以导致光输出信号较大的变化。

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于2010-11-23批量导入