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Thermal stability of 2DEG at amorphous LaAlO3/crystalline SrTiO3 heterointerfaces.


ABSTRACT: At present, the generation of heterostructures with two dimensional electron gas (2DEG) in amorphous LaAlO3 (a-LAO)/SrTiO3 (STO) has been achieved. Herein, we analysed thermal stability of 2DEG at a-LAO/STO interfaces in comparison with 2DEG at crystalline LaAlO3 (c-LAO)/STO interfaces. To create 2DEG at LAO/STO interface, regardless of growing temperature from 25 to 700 °C, we found that environment with oxygen deficient during the deposition of LAO overlayer is essentially required. That indicates that the oxygen-poor condition in the system is more essential than the crystalline nature of LAO layer. 2DEG at a-LAO/STO interface is depleted upon ex situ annealing at 300 °C under 300 Torr of oxygen pressure, while that in c-LAO/STO interface is still maintained. Our result suggests that the LAO overlayer crystallinity critically affects the thermal-annealing-induced depletion of 2DEG at a-LAO/STO interface rather than the generation of 2DEG. We clearly provide that amorphous TiOx can efficiently prevent the thermal degradation of 2DEG at the a-LAO/STO interface, which gives a cornerstone for achieving thermal-stable 2DEG at a-LAO/STO interface.

SUBMITTER: Moon SY 

PROVIDER: S-EPMC5271142 | biostudies-literature | 2016

REPOSITORIES: biostudies-literature

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Thermal stability of 2DEG at amorphous LaAlO<sub>3</sub>/crystalline SrTiO<sub>3</sub> heterointerfaces.

Moon Seon Young SY   Moon Cheon Woo CW   Chang Hye Jung HJ   Kim Taemin T   Kang Chong-Yun CY   Choi Heon-Jin HJ   Kim Jin-Sang JS   Baek Seung-Hyub SH   Jang Ho Won HW  

Nano convergence 20160401 1


At present, the generation of heterostructures with two dimensional electron gas (2DEG) in amorphous LaAlO<sub>3</sub> (a-LAO)/SrTiO<sub>3</sub> (STO) has been achieved. Herein, we analysed thermal stability of 2DEG at a-LAO/STO interfaces in comparison with 2DEG at crystalline LaAlO<sub>3</sub> (c-LAO)/STO interfaces. To create 2DEG at LAO/STO interface, regardless of growing temperature from 25 to 700 °C, we found that environment with oxygen deficient during the deposition of LAO overlayer is  ...[more]

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