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Direct evidence for significant spin-polarization of EuS in Co/EuS multilayers at room temperature

机译:在室温下Co / EuS多层膜中EuS明显自旋极化的直接证据

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The new era of spintronics promises the development of nanodevices, where the electron spin will be used to store information and charge currents will be replaced by spin currents. For this, ferromagnetic semiconductors at room temperature are needed. We report on significant room-temperature spin polarization of EuS in Co/EuS multilayers recorded by x-ray magnetic circular dichroism (XMCD). The films were found to contain a mixture of divalent and trivalent europium, but only Eusup++/sup is responsible for the ferromagnetic behavior of EuS. The magnetic XMCD signal of Eu at room temperature could unambiguously be assigned to magnetic ordering of EuS and was found to be only one order of magnitude smaller than that at 2.5?K. The room temperature magnetic moment of EuS is as large as the one of bulk ferromagnetic Ni. Our findings pave the path for fabrication of room–temperature spintronic devices using spin polarized EuS layers.
机译:自旋电子学的新时代有望发展纳米器件,其中电子自旋将用于存储信息,而充电电流将被自旋电流取代。为此,需要室温下的铁磁半导体。我们报告了通过X射线磁性圆二色性(XMCD)记录的Co / EuS多层中EuS的显着室温自旋极化。发现该膜包含二价和三价euro的混合物,但只有Eu ++ 负责EuS的铁磁行为。可以将室温下Eu的XMCD磁信号明确地分配给EuS的磁有序,并且发现它仅比2.5?K小一个数量级。 EuS的室温磁矩与块状铁磁Ni一样大。我们的发现为使用自旋极化EuS层制造室温自旋电子器件铺平了道路。

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