首页> 外文会议>NATO Advanced Research Workshop on Nanostructured Magnetic Materials and their Applications >IMPACT OF GEOMETRY AND MATERIAL STACKING ON THE PROPERTIES OF MAGNETIC TUNNELLING JUNCTIONS
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IMPACT OF GEOMETRY AND MATERIAL STACKING ON THE PROPERTIES OF MAGNETIC TUNNELLING JUNCTIONS

机译:几何形状和材料堆叠对磁隧道结的性能的影响

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The discoveries of antiferromagnetic coupling in Fe/Cr multilayers by Grtinberg, the Giant MagnetoResistance by Fert and Grunberg and a large tunnelling magnetoresistance at room temperature by Moodera have triggered enormous research on magnetic thin films and magnetoelectronic devices. Large opportunities are especially opened by the spin dependent tunnelling resistance, where a strong dependence of the tunnelling current on an external magnetic field can be found. Within a short time, the quality of these junctions increased dramatically. We will briefly address important basic properties of these junctions depending on the material stacking sequence of the underlying thin film system with special regard to the ferromagnetic electrodes. Next, we discuss scaling issues, i.e. the influence of the geometry of small tunnelling junctions especially on the magnetic switching behaviour down to junction sizes below 0.0 lum2. The last part will give a short overview on applications beyond the use of the tunnelling elements as storage cells in MRAMs. This concerns mainly field programmable logic circuits, where we demonstrate the clocked operation of a programmed AND gate. The second 'unconventional' feature is the use as sensing elements in DNA or protein biochips, where molecules marked magnetically with commercial beads can be detected via the dipole stray field in a highly sensitive and relatively simple way.
机译:GRTINBERG在Fe / Cr多层中发现的反铁磁耦合,由穆达格省温度和Grunberg的巨型磁阻和大型隧道磁阻的磁性薄膜和磁电装置的巨大研究引发了巨大的研究。通过自旋依赖性隧道电阻尤其开启了大量机会,其中可以找到隧道电流对外部磁场上的强依赖性。在短时间内,这些交叉点的​​质量急剧增加。根据具有特殊考虑到铁磁电极的底层薄膜系统的材料堆叠序列,我们将简要地解决这些连接的重要基本性质。接下来,我们讨论缩放问题,即小型隧道连接的几何形状的影响,尤其是磁力开关行为下降到0.0毫升的结尺寸。最后一部分将简要概述超出使用隧道元素作为MRAM中的存储单元的应用程序。这主要涉及现场可编程逻辑电路,在那里我们展示了编程和门的时钟操作。第二个“非传统”特征是用作DNA或蛋白质生物芯片中的感测元素,其中可以通过偶极杂交场以高敏感和相对简单的方式检测磁性地用商业珠子标记的分子。

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