首页> 外文期刊>Physical review >Band-tail shape and transport near the metal-insulator transition in Si-doped Al_(0.3)Ga_(0.7)As
【24h】

Band-tail shape and transport near the metal-insulator transition in Si-doped Al_(0.3)Ga_(0.7)As

机译:掺Si的Al_(0.3)Ga_(0.7)As中金属-绝缘体跃迁附近的带尾形状和迁移

获取原文
获取原文并翻译 | 示例
           

摘要

In the present work, an infrared light-emitting diode is used to photodope molecular-beam-epitaxy-grown Si:Al_(0.3)Ga_(0.7)As, a well-known persistent photoconductor, to vary the effective electron concentration of samples in situ. Using this technique, we examine the transport properties of two samples containing different nominal doping concentrations of Si [1 × 10~(19) cm~(-3) for sample 1 (S1) and 9 × 10~(17) cm~(-3) for sample 2 (S2)] and vary the effective electron density between 10~(14) and 10~(18) cm~(-3). The metal-insulator transition for S1 is found to occur at a critical carrier concentration of 5.7 × 10~(16) cm~(-3) at 350 mK. The mobilities in both samples are found to be limited by ionized impurity scattering in the temperature range probed, and are adequately described by the Brooks-Herring screening theory for higher carrier densities. The shape of the band tail of the density of states in Al_(0.3)Ga_(0.7)As is found electrically through transport measurements. It is determined to have a power-law dependence, with an exponent of -1.25 for S1 and -1.38 for S2.%Jennifer Misuraca;Jelena Trbovic;Jun Lu;Jianhua Zhao;Yuzo Ohno;Hideo Ohno;Peng Xiong;Stephan von Molnar;
机译:在目前的工作中,使用红外发光二极管对分子束外延生长的Si:Al_(0.3)Ga_(0.7)As进行光掺杂,以改变样品中的有效电子浓度。原地。使用这种技术,我们检查了两个样品的传输特性,其中样品1(S1)和9×10〜(17)cm〜()的Si的标称掺杂浓度不同[1×10〜(19)cm〜(-3)。 -3)(样品2(S2)),并在10〜(14)和10〜(18)cm〜(-3)之间改变有效电子密度。发现S1的金属-绝缘体转变发生在350 mK的临界载流子浓度为5.7×10〜(16)cm〜(-3)时。发现两个样品中的迁移率都受到所探测温度范围内的电离杂质散射的限制,并且对于较高的载流子密度,Brooks-Herring筛选理论已充分描述了迁移率。通过传输测量电学地发现Al_(0.3)Ga_(0.7)As中的状态密度的带尾形状。确定具有幂律依赖性,S1的指数为-1.25,S2的指数为-1.38。%Jennifer Misuraca,Jelena Trbovic,Jun Lu,Jianhua Zhao,Yuzo Ohno,Hideo Ohno,Peng Xiong,Stephan von Molnar ;

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号