Negative differential resistance and spectral characteristics of original and electron-irradiated (with E = 2 MeV) GaAs1-xPx LEDs
Saved in:
| Date: | 2024 |
|---|---|
| Main Authors: | T. I. Mosiuk, R. M. Vernydub, P. G. Lytovchenko, M. B. Pinkovska, D. P. Stratilat, V. P. Tartachnyk |
| Format: | Article |
| Language: | English |
| Published: |
2024
|
| Series: | Nuclear physics and atomic energy |
| Online Access: | http://jnas.nbuv.gov.ua/article/UJRN-0001494050 |
| Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
| Journal Title: | Library portal of National Academy of Sciences of Ukraine | LibNAS |
Institution
Library portal of National Academy of Sciences of Ukraine | LibNASSimilar Items
Electrophysical characteristics of GaAs1-xPx LEDs irradiated by 2 MeV electrons
by: R. M. Vernydub, et al.
Published: (2020)
by: R. M. Vernydub, et al.
Published: (2020)
Electrophysical characteristics of GaAs₁₋ₓPₓ LEDs irradiated by 2 MeV electrons
by: Vernydub, R.M., et al.
Published: (2020)
by: Vernydub, R.M., et al.
Published: (2020)
Influence of electron irradiation with E = 2 MeV on electrophysical and optical characteristics of green InGaN/GaN LEDs
by: T. I. Mosiuk, et al.
Published: (2023)
by: T. I. Mosiuk, et al.
Published: (2023)
Spectral characteristics of initial and irradiated GaAsP LEDs
by: R. M. Vernydub, et al.
Published: (2021)
by: R. M. Vernydub, et al.
Published: (2021)
Degradation and recovery features of irradiated GAP LEDs
by: O. P. Budnyk, et al.
Published: (2022)
by: O. P. Budnyk, et al.
Published: (2022)
Properties of original and irradiated phosphide-gallium LEDs
by: M. Y. Chumak, et al.
Published: (2024)
by: M. Y. Chumak, et al.
Published: (2024)
Electrical and optical characteristics of GaP diodes, irradiated with 2 MeV electrons
by: O. V. Konoreva, et al.
Published: (2014)
by: O. V. Konoreva, et al.
Published: (2014)
Influence of 2 MeV electrons irradiation on gallium phosphide light-emitting diodes reverse currents
by: V. H. Vorobiov, et al.
Published: (2015)
by: V. H. Vorobiov, et al.
Published: (2015)
Acoustic-stimulated relaxation of GaAs1–khPkh LEDs electroluminescence intensity
by: O. V. Konoreva, et al.
Published: (2016)
by: O. V. Konoreva, et al.
Published: (2016)
Influence of radiation on the electrophysical parameters of GaAsP LEDs
by: R. M. Vernydub, et al.
Published: (2021)
by: R. M. Vernydub, et al.
Published: (2021)
Electrophysical characteristics of initial and irradiated GaAsP LEDs structures
by: O. V. Konoreva, et al.
Published: (2019)
by: O. V. Konoreva, et al.
Published: (2019)
Characteristics of ADS target irradiated by 200…400 MeV proton beam
by: Svistunov, Yu.A., et al.
Published: (2013-04-04)
by: Svistunov, Yu.A., et al.
Published: (2013-04-04)
Nd-Fe-B magnets under electron irradiation with the energy of 23 MeV
by: Bovda, V.A., et al.
Published: (2020)
by: Bovda, V.A., et al.
Published: (2020)
New target assembly for solid samples irradiation in 11-MeV medical cyclotron
by: Bondar, B.M., et al.
Published: (2020)
by: Bondar, B.M., et al.
Published: (2020)
30 MeV injector for a synchrotron
by: Chernov, K., et al.
Published: (2001)
by: Chernov, K., et al.
Published: (2001)
Formation of MeV energy ion beams with high current density for materials micro-irradiation
by: Romanenko, A.V., et al.
Published: (2013)
by: Romanenko, A.V., et al.
Published: (2013)
Influence of IR illumination on conduction electron scattering in crystals irradiated with 25-MeV protons
by: T. A. Pagava, et al.
Published: (2015)
by: T. A. Pagava, et al.
Published: (2015)
Influence of IR illumination on conduction electron scattering in crystals irradiated with 25-MeV protons
by: T. A. Pagava, et al.
Published: (2015)
by: T. A. Pagava, et al.
Published: (2015)
The ordering effects of an n-Si defect structure, induced by high fluences of ions with MeV energies
by: H. P. Haidar, et al.
Published: (2021)
by: H. P. Haidar, et al.
Published: (2021)
Magnetic field losses in Nd-Fe-B magnets under 10 MeV electron irradiation
by: Bovda, V.A., et al.
Published: (2017)
by: Bovda, V.A., et al.
Published: (2017)
A system for polymer film irradiation with heavy ions accelerated to the energy of 1 MeV/u
by: Bomko, V.A., et al.
Published: (2006)
by: Bomko, V.A., et al.
Published: (2006)
Elastic deuteron-triton scattering AT 37MeV
by: Belyuskina, O.O., et al.
Published: (2009)
by: Belyuskina, O.O., et al.
Published: (2009)
Plasma lens for MeV heavy ion beam focusing
by: Il’enko, B.P., et al.
Published: (2000)
by: Il’enko, B.P., et al.
Published: (2000)
Elastic scattering of deuterons by deuterons at Ed ≤ 85 MeV
by: Beliuskina, O.O., et al.
Published: (2011)
by: Beliuskina, O.O., et al.
Published: (2011)
Status of modern concepts of high power 14 MeV neutron source
by: Kruglyakov, E. P.
Published: (2000)
by: Kruglyakov, E. P.
Published: (2000)
Deuteron break-up by 40Sa nuclei at 56 MeV energy
by: O. V. Babak, et al.
Published: (2019)
by: O. V. Babak, et al.
Published: (2019)
New 15 MeV electron accelerator for non-destructive testing
by: Vorogushin, M.F., et al.
Published: (2001)
by: Vorogushin, M.F., et al.
Published: (2001)
Effect of 1. 9-MeV electron irradiation on characteristics of reactively-pressed TiB2-TiS ceramic composites
by: I. N. Totsky, et al.
Published: (2013)
by: I. N. Totsky, et al.
Published: (2013)
Generation of MeV -energy protons in WWER reactor core
by: Gann, A.V., et al.
Published: (2009)
by: Gann, A.V., et al.
Published: (2009)
PADC response to 0.3 - 3 MeV protons
by: I. Traore, et al.
Published: (2020)
by: I. Traore, et al.
Published: (2020)
Энергетические и частотные характеристики GaAs диодов Ганна с AlxGa1-xAs и GaPxAs1-x катодами
by: Стороженко, И.П., et al.
Published: (2007)
by: Стороженко, И.П., et al.
Published: (2007)
Self-organization in irradiated semiconductor crystals caused by thermal annealing
by: M. Zavada, et al.
Published: (2018)
by: M. Zavada, et al.
Published: (2018)
Self-organization in irradiated semiconductor crystals caused by thermal annealing
by: Zavada, M., et al.
Published: (2018)
by: Zavada, M., et al.
Published: (2018)
Small-size 2.5 MeV electron accelerator with local radiation shielding
by: Gavrish, Yu.N., et al.
Published: (2001)
by: Gavrish, Yu.N., et al.
Published: (2001)
S-band electron linac with beam energy of 30…100 MeV
by: Antipov, K.I., et al.
Published: (2004)
by: Antipov, K.I., et al.
Published: (2004)
On the mechanism of photoneutron reactions at light tellurium isotopes in the 10–18 MeV interval
by: V. M. Mazur, et al.
Published: (2021)
by: V. M. Mazur, et al.
Published: (2021)
Performance analysis of 30 MeV electron linac with a new injector system
by: Gokov, S.P., et al.
Published: (2009)
by: Gokov, S.P., et al.
Published: (2009)
Аpxівні роботи В. К. Mіхеєва
Published: (2009)
Published: (2009)
Production of beams of multi-charged iron ions 56Fe with energy 0.64 - 7.92 MeV for irradiation of construction materials
by: V. B. Moskalenko, et al.
Published: (2020)
by: V. B. Moskalenko, et al.
Published: (2020)
TiO₂-2 radiating damages as a result of the irradiation helium ions with energies of 0.12 and 4 MeV on the linear accelerator
by: Butenko, V.I., et al.
Published: (2023)
by: Butenko, V.I., et al.
Published: (2023)
Similar Items
-
Electrophysical characteristics of GaAs1-xPx LEDs irradiated by 2 MeV electrons
by: R. M. Vernydub, et al.
Published: (2020) -
Electrophysical characteristics of GaAs₁₋ₓPₓ LEDs irradiated by 2 MeV electrons
by: Vernydub, R.M., et al.
Published: (2020) -
Influence of electron irradiation with E = 2 MeV on electrophysical and optical characteristics of green InGaN/GaN LEDs
by: T. I. Mosiuk, et al.
Published: (2023) -
Spectral characteristics of initial and irradiated GaAsP LEDs
by: R. M. Vernydub, et al.
Published: (2021) -
Degradation and recovery features of irradiated GAP LEDs
by: O. P. Budnyk, et al.
Published: (2022)