CuInTe2 single crystals are studied using optical magneto-reflectance (MR) in magnetic fields B up to 20 T at 4.2 K. The spectra exhibit the A and B free excitons' blue shifting at increasing magnetic fields. Fitting quadratic functions to the experimental dependencies of the exciton spectral energy on B assuming a low field limit allow the determination of diamagnetic shift rates of 8.2 × 10−5 and 8.5 × 10−5 eV T−2 for the A and B free excitons, respectively. The excitons' reduced masses of 0.0575m0 and 0.0568m0 (m0 is the free electron mass), Rydbergs of 6.2 and 6.1 meV, and Bohr radii of 10.4 and 10.5 nm are then estimated. An electron effective mass of 0.062m0 and B sub-band effective hole mass of 0.70m0 are determined using a literatur...
The excitonic reflectivity spectra and the wave-length derivative reflection spectra have been in...
The spectra of reflectance and luminescence of high-quality CuInS2 single crystals grown by oriented...
The precise reflectivity spectra of copper indium diselenide are obtained in energy range 1 to 5 eV...
CuInTe 2 single crystals are studied using optical magneto-reflectance (MR) in magnetic fields B up ...
CuGaSe2 single crystals are studied using magneto-reflectivity at 4.2 K in magnetic fields B up to 2...
CuGaSe2 single crystals are studied using magneto-reflectivity at 4.2 K in magnetic fields B up to 2...
Magnetotransmission (MT) at magnetic fields up to 29 T was used to study the electronic structure of...
CuInTe2 is a semiconductor with high potential for use as a thermoelectric material and as the absor...
CuInTe 2 is a semiconductor with high potential for use as a thermoelectric material and as the abso...
Magnetotransmission (MT) at magnetic fields up to 29 T was used to study the electronic structure of...
The effects of magnetic fields up to 20 T were studied in CuInSe2 single crystals using photolumines...
High structural quality single crystals of CuGaSe2 were studied using photoluminescence (PL), optica...
The electronic structure of the solar cell absorber CuInSe2 is studied using magneto-transmission in...
CuInSe₂, CuInS₂ and CuGaSe₂ are I-III-VI₂ compound semiconductors with a chalcopyrite structure. The...
Single crystals of CuInS2 were studied with reflectance (RF) and photoluminescence (PL) at 4.2 K in ...
The excitonic reflectivity spectra and the wave-length derivative reflection spectra have been in...
The spectra of reflectance and luminescence of high-quality CuInS2 single crystals grown by oriented...
The precise reflectivity spectra of copper indium diselenide are obtained in energy range 1 to 5 eV...
CuInTe 2 single crystals are studied using optical magneto-reflectance (MR) in magnetic fields B up ...
CuGaSe2 single crystals are studied using magneto-reflectivity at 4.2 K in magnetic fields B up to 2...
CuGaSe2 single crystals are studied using magneto-reflectivity at 4.2 K in magnetic fields B up to 2...
Magnetotransmission (MT) at magnetic fields up to 29 T was used to study the electronic structure of...
CuInTe2 is a semiconductor with high potential for use as a thermoelectric material and as the absor...
CuInTe 2 is a semiconductor with high potential for use as a thermoelectric material and as the abso...
Magnetotransmission (MT) at magnetic fields up to 29 T was used to study the electronic structure of...
The effects of magnetic fields up to 20 T were studied in CuInSe2 single crystals using photolumines...
High structural quality single crystals of CuGaSe2 were studied using photoluminescence (PL), optica...
The electronic structure of the solar cell absorber CuInSe2 is studied using magneto-transmission in...
CuInSe₂, CuInS₂ and CuGaSe₂ are I-III-VI₂ compound semiconductors with a chalcopyrite structure. The...
Single crystals of CuInS2 were studied with reflectance (RF) and photoluminescence (PL) at 4.2 K in ...
The excitonic reflectivity spectra and the wave-length derivative reflection spectra have been in...
The spectra of reflectance and luminescence of high-quality CuInS2 single crystals grown by oriented...
The precise reflectivity spectra of copper indium diselenide are obtained in energy range 1 to 5 eV...