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Photoelectronic and electrical properties of InS crystals

机译:InS晶体的光电性能

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To identify the localized levels in InS single crystals, the dark electrical conductivity, current―voltage characteristics and photoconductivity measurements were carried out in the temperature range of 10―350 K. Temperature dependence of dark electrical conductivity and the space-charge limited current studies indicate the presence of a single discrete trapping level located at (10 +- 2) meV below the conduction band with a density of about 4.8 X 10~(11) cm~(-3). The conductivity data above 110 K reveal an additional two independent donor levels with activation energies of (50 +- 2) and (164 +- 4) meV indicating the extrinsic nature of conductivity. The spectral distribution of photocurrent in the photon energy range of 0.8-3.1 eV reveals an indirect band gap of (1.91 +- 0.04) eV. The photocurrent-illumination intensity dependence follows the law I_(ph) ∝ F~γ, with γ being 1.0 and 0.5 at low and high illumination intensities indicating the domination of monomolecular and bimolecular recombination, respectively. It is observed that the photocurrent increases in the temperature range of 10 K up to T_m = 110 K and decreases or remains constant for 110 K < T < 160 K and increases again above 160 K. The temperature dependence of the photocurrent reveals an additional shallow impurity level with activation energies of 3 meV.
机译:为了确定InS单晶中的局部能级,在10-350 K的温度范围内进行了暗电导率,电流-电压特性和光电导率的测量。暗电导率的温度依赖性和空间电荷限制电流研究表明在导带下方(10 +-2)meV处存在单个离散俘获能级,其密度约为4.8 X 10〜(11)cm〜(-3)。高于110 K的电导率数据显示出另外两个独立的供体能级,其激活能为(50 + -2)和(164 + -4)meV,表明电导率是非本质的。在0.8-3.1 eV的光子能量范围内的光电流光谱分布显示出(1.91 +-0.04)eV的间接带隙。光电流照明强度的依从性遵循I_(ph)∝ F〜γ的定律,在低和高照明强度下γ分别为1.0和0.5,表明单分子和双分子重组占主导地位。可以观察到,在10 K的温度范围内,光电流增加到T_m = 110 K,并且在110 K

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