Quantum wells with graded barriers are demonstrated as a means to control both the transition energy and electron-hole wave function overlap for quantum wells with an intrinsic internal electric field. In the case of c-axis grown ZnO/ZnMgO quantum wells, the graded barriers are produced by stepping the magnesium composition during the growth process. Four quantum wells with different structures are examined, where each well has similar transition energy, yet a wide range of wave function overlaps are observed. Photoluminescence and time resolved photoluminescence show good agreement with calculations.Australian Research Council is gratefully acknowledged for financial support. C.R.H. thanks Lastek for financial support
International audienceWe have investigated a series of samples embedding ZnO/(Zn,Mg)O quantum wells ...
Exciton localization in ZnO/MgxZn1−xOquantum wells(QWs) has been investigated systematically with va...
ZnO/Zn0.8Mg0.2O multiple-quantum-well (MQW) nanorods with a different number of periods and well wid...
Quantum wells with graded barriers are demonstrated as a means to control both the transition energy...
Strong suppression of the effects caused by the internal electric field in ZnO/ZnMgO quantum wells f...
International audienceWe report on the optical spectroscopy of a series of ZnO/(Zn, Mg)O quantum wel...
In this review, we discuss first some of the recent works to reveal properties of conventional ZnO/Z...
International audienceWe report growth of high quality ZnO/Zn0.8Mg0.2O quantum well on M-plane orien...
International audienceTime-integrated photoluminescence experiments are used to study the excitonic ...
ZnO/Zn(1 - x)Mg(x)O single quantum well (SQW) structures with well widths d(W) between 1.1nm and 10....
Zinc oxide is a wide gap semiconductor (≈ 3.4 eV) which one of the main advantages is a large excito...
Abstract: This paper reviews the optical properties of ZnO/(Zn, Mg)O single quantum wells grown by m...
Mg(0.25)Zn(0.75)O/ZnO-quantum well nanowire heterostructures were grown with a three-step pulsed las...
In this thesis, the recombination dynamics within ZnO/MgZnO quantum wells under the influence of the...
The authors report on fabrication and photoluminescent (PL) properties of ZnO/Mg0.2Zn0.8O coaxial na...
International audienceWe have investigated a series of samples embedding ZnO/(Zn,Mg)O quantum wells ...
Exciton localization in ZnO/MgxZn1−xOquantum wells(QWs) has been investigated systematically with va...
ZnO/Zn0.8Mg0.2O multiple-quantum-well (MQW) nanorods with a different number of periods and well wid...
Quantum wells with graded barriers are demonstrated as a means to control both the transition energy...
Strong suppression of the effects caused by the internal electric field in ZnO/ZnMgO quantum wells f...
International audienceWe report on the optical spectroscopy of a series of ZnO/(Zn, Mg)O quantum wel...
In this review, we discuss first some of the recent works to reveal properties of conventional ZnO/Z...
International audienceWe report growth of high quality ZnO/Zn0.8Mg0.2O quantum well on M-plane orien...
International audienceTime-integrated photoluminescence experiments are used to study the excitonic ...
ZnO/Zn(1 - x)Mg(x)O single quantum well (SQW) structures with well widths d(W) between 1.1nm and 10....
Zinc oxide is a wide gap semiconductor (≈ 3.4 eV) which one of the main advantages is a large excito...
Abstract: This paper reviews the optical properties of ZnO/(Zn, Mg)O single quantum wells grown by m...
Mg(0.25)Zn(0.75)O/ZnO-quantum well nanowire heterostructures were grown with a three-step pulsed las...
In this thesis, the recombination dynamics within ZnO/MgZnO quantum wells under the influence of the...
The authors report on fabrication and photoluminescent (PL) properties of ZnO/Mg0.2Zn0.8O coaxial na...
International audienceWe have investigated a series of samples embedding ZnO/(Zn,Mg)O quantum wells ...
Exciton localization in ZnO/MgxZn1−xOquantum wells(QWs) has been investigated systematically with va...
ZnO/Zn0.8Mg0.2O multiple-quantum-well (MQW) nanorods with a different number of periods and well wid...