We have investigated the effects of nitrogen vacancies (V(N)) induced by Mn doping on the electronic structure and transport properties of (Ga,Mn)N films grown by metal organic chemical vapour deposition (MOCVD). The significant increase in n-type carrier concentration in the (Ga,Mn)N film is attributed to the additional VN induced by Mn doping. Temperature-dependent Hall data indicate that the additional VN is the dominant scattering mechanism in the (Ga,Mn)N film in higher temperature regions. The Mn L(2,3) x-ray absorption spectra of the (Ga,Mn)N film shows a multiplet structure, indicating that the Mn ions are present mainly in the Mn(2+)(d(5)) states. These can be attributed to the electrons transferring from VN, which is well consiste...
In this paper, the growth of GaN:Mn thin films by plasma-assisted metalorganic chemical vapor deposi...
In this paper, the growth of GaN:Mn thin films by plasma-assisted metalorganic chemical vapor deposi...
© 2006 American Vacuum Society. This article may be downloaded for personal use only. Any other use ...
In this paper, we have investigated the structural, optical and magnetic properties of Ga1-xMnxN fil...
The incorporation of Mn into GaMnN epilayers by MOCVD growth was investigated. Samples with high Mn ...
In this letter, Raman spectra for a series of (Ga, Mn)N samples with different Mn concentration grow...
We report on the growth and characterization of dilute magnetic semiconductor GaMnN showing ferromag...
Role of vacancy-type (N vacancy (V-N) and Ga vacancy (V-Ga)) defects in magnetism of GaMnN is invest...
The Ga1-xMnxN epitaxial films were grown by metalorganic chemical vapor deposition (MOCVD) with tric...
A detailed study is presented on magnetic, electrical and optical properties of Ga1-x Mn (x) N: Si f...
GaMnN/GaN multilayers and conventional GaMnN single layers are grown by metal-organic chemical vapor...
In this study thin film samples of Ga1-xMnxN were grown by pulsed laser deposition on A12O3 (0001) s...
Ga1–xMnxN epilayers and p-i-n device structures have been grown by metalorganic chemical vapor depo-...
Ga1–xMnxN epilayers and p-i-n device structures have been grown by metalorganic chemical vapor depo-...
In this paper, the growth of GaN:Mn thin films by plasma-assisted metalorganic chemical vapor deposi...
In this paper, the growth of GaN:Mn thin films by plasma-assisted metalorganic chemical vapor deposi...
In this paper, the growth of GaN:Mn thin films by plasma-assisted metalorganic chemical vapor deposi...
© 2006 American Vacuum Society. This article may be downloaded for personal use only. Any other use ...
In this paper, we have investigated the structural, optical and magnetic properties of Ga1-xMnxN fil...
The incorporation of Mn into GaMnN epilayers by MOCVD growth was investigated. Samples with high Mn ...
In this letter, Raman spectra for a series of (Ga, Mn)N samples with different Mn concentration grow...
We report on the growth and characterization of dilute magnetic semiconductor GaMnN showing ferromag...
Role of vacancy-type (N vacancy (V-N) and Ga vacancy (V-Ga)) defects in magnetism of GaMnN is invest...
The Ga1-xMnxN epitaxial films were grown by metalorganic chemical vapor deposition (MOCVD) with tric...
A detailed study is presented on magnetic, electrical and optical properties of Ga1-x Mn (x) N: Si f...
GaMnN/GaN multilayers and conventional GaMnN single layers are grown by metal-organic chemical vapor...
In this study thin film samples of Ga1-xMnxN were grown by pulsed laser deposition on A12O3 (0001) s...
Ga1–xMnxN epilayers and p-i-n device structures have been grown by metalorganic chemical vapor depo-...
Ga1–xMnxN epilayers and p-i-n device structures have been grown by metalorganic chemical vapor depo-...
In this paper, the growth of GaN:Mn thin films by plasma-assisted metalorganic chemical vapor deposi...
In this paper, the growth of GaN:Mn thin films by plasma-assisted metalorganic chemical vapor deposi...
In this paper, the growth of GaN:Mn thin films by plasma-assisted metalorganic chemical vapor deposi...
© 2006 American Vacuum Society. This article may be downloaded for personal use only. Any other use ...