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中国物理学会期刊

超强磁场下非掺杂ZnSe/BeTe Ⅱ型量子阱中激子和带电激子的光学特性

CSTR: 32037.14.aps.60.047805

Optical properties of exciton and charged exciton in undoped ZnSe/BeTe type-Ⅱ quantum wells under high magnetic fields

CSTR: 32037.14.aps.60.047805
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  • 报道了液态氦温度(4.2 K)下非掺杂ZnSe/BeTe Ⅱ型量子结构中ZnSe势阱层内空间直接光致发光(PL)光谱的磁场依赖性(磁场高达53 T).实验结果显示,随着磁场的增加,激子和带电激子的PL强度呈现出相反的振动行为.当激子的PL强度增加时带电激子的PL强度减小,反之,当激子的强度减小时带电激子的强度却增加.并且在整个磁场范围内,这些振动呈现近似等间隔的周期性变化.这个行为被解释为费米能级与朗道能级的周期性共振,这个共振导致了处于费米能级上的二维电子气态密度的周期性调制.

     

    We report on the magnetic field (up to 53 T) dependence of photoluminescence (PL) spectra occurring as a spacially direct optical transition of the ZnSe layer in undoped ZnSe/BeTe/ZnSe type-II quantum structures at a low temperature (4.2 K). With magnetic field increasing, the PL intensity (IX) of exciton (X) shows an oscillation feature opposite to the PL intensity (IX-) of charged exciton (X-). As IX- increases, IX decreases, but as IX- decreases, IX increases. In all fields, the oscillation behaviour shows a periodic change approximately with magnetic field interval. The results are attributed to the periodic resonance of the Fermi level with the Landau level, which results in the modulation of the density of states of the 2DEG system at the Fermi energy.

     

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