标题: 掺杂锰原子对Cd1-xMnxSe奈米颗粒磁性之影响
Influence of Mn ion on magnetism in Cd1-xMnxSe nanocrystals
作者: 陈怡然
简纹滨
电子物理系所
关键字: Cd1-xMnxSe;稀磁半导体;奈米颗粒;Cd1-xMnxSe;DMS;Diluted magnetic semiconductor;nanocrystal
公开日期: 2008
摘要: 过去二十年来,半导体奈米颗粒由于其所具有的新颖物理性质以及其作为制造奈米元件最小单位的潜力而广受科学家关注。为了进一步控制奈米颗粒的物理性质,科学家试着掺杂各种不同元素以控制半导体奈米颗粒的物理特性。掺杂磁性原子的半导体奈米颗粒,即稀磁半导体奈米颗粒,由于其结合了磁学,光学,与电学的性质在近几年来引起科学家的注意。然而,至今仍然少有文献讨论掺杂磁性原子对稀磁半导体奈米颗粒的磁学性质之影响。
在本论文中,我们将讨论掺杂锰原子之硒化镉奈米颗粒磁性之影响。我们使用超导量子干涉磁量仪量测掺杂锰原子之硒化镉奈米颗粒在低温下磁化量随磁场变化之行为,以及其在小磁场下磁化量随温度变化之行为。我们观测到在低温以及大磁场下将有一磁化量不饱和的现象,此现象随着锰原子掺杂浓度越高而越明显,并且不能被锰原子内部自由载子产生的庖利顺磁所解释。我们在小外加磁场下量测磁化率对温度的变化,由量测与最佳拟合的结果可知其小磁场下磁化率对温度的变化行为不能被居理定律所解释。在考虑奈米颗粒中自由载子本身的庖利顺磁后我们发现在掺杂浓度越小的情况下掺杂锰的硒化镉奈米颗粒其磁性较接近磁性原子的磁性与庖利顺磁的叠加,当掺杂浓度越高由于掺杂锰原子对庖利顺磁的磁性影响越显着因此其磁性行为越不能被磁性原子的磁性与奈米颗粒本身磁性的叠加所解释。
Semiconductor nanocrystal has been widely studied in last two decades, not only because the novel physical properties it has but also the potential of been building block of nanodevice. To modify semiconductor nanocrystal’s physical properties, doping impurities in nanocrystal is a widely used approach. Magnetic ion doped semiconductor nanocrystal, named diluted magnetic semiconductor nanocyrstal (DMSNC), such like Cd1-xMnxSe, Cd1-xMnxTe etc., has attracted scientists attention in recent years because of its potential of been new building block of nanodevice and combination of magnetic , electrical, and optical properties. Although the optical properties in this kind of material have been widely studied and the magnetic properties have been discussed in theoretical approach, the experimental study of magnetic properties in DMSNC is still lack.
In this article, the magnetic properties of Cd1-xMnxSe nanocrystal with different size (d=5, 8 nm) and concentration (x=0.375 %, 0.15 %) have been studied by using SQUID magnetometer. Magnetic field dependence of magnetization (M-H curves) has been measured under 2 K and temperature dependence of magnetic susceptibility (χ-T curves) has been measured under external magnetic field in 100 Oe. The non-saturated phenomenon has been observed in all of the M-H curves. This phenomenon has been more manifest in higher concentration sample. We also observed that Curie law can not explain the χ-T curves of all of our samples because the nonzero magnetic susceptibility under high temperature region. After considering the Pauli paramagnetism comes from the free carriers in nanocrystals, we observed that, in lower concentration samples, magnetic properties could be explained by a summation of magnetic properties come from the Mn ions and the free-carriers in nanocrystal. However, in higher concentration samples, the Mn ions will affect the magnetic properties of free-carriers in nanocrystal thus making the magnetic properties more complex.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079621504
http://hdl.handle.net/11536/42416
显示于类别:Thesis


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