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- W797732808 abstract "The (Zn,Co)Te is a one of diluted magnetic semiconductor (DMS) with particularly strong interaction of magnetic ions and free holes. The interaction can be described by p d exchange integral N0β = −3.03 ± 0.15 eV [1], so the absolute value is two or three times larger than for the other Co or Mn based DMSs (e.g. for (Cd,Mn)Te N0β = −0.88 eV [2]). High optical quality bulk (Zn,Co)Te samples studied in Ref. [1] were grown using the Bridgman method, with cobalt concentration between 0.05 and 1.06%. Other technique to introduce Co into ZnTe was thermal di usion [3], which allowed infrared spectroscopy of intraionic Co transitions [3, 4]. Main di culty in doping of the ZnTe crystals during growth is high evaporation temperatures of Co as compared with the evaporation temperatures of Zn and Te [3]. For molecular beam epitaxy (MBE) this di culty should be not as important as for other crystal growth techniques, but for our best knowledge, there was no reports on MBE (Zn,Co)Te. It would be very interesting to enhance magnetooptical e ects using higher Co concentrations and epitaxial nanostructures such as quantum wells, quantum dots, or distributed Bragg reectors. This is the reason why we equipped our new MBE machine (SVT model 26-V-3) in high temperature e usion cell." @default.
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- W797732808 date "2012-12-01" @default.
- W797732808 modified "2023-10-16" @default.
- W797732808 title "MBE Growth and Magnetooptical Properties of (Zn,Co)Te Layers" @default.
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- W797732808 doi "https://doi.org/10.12693/aphyspola.122.1010" @default.
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