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Spectroscopic analysis of Dy3+ ions activated borosilicate glasses for photonic device applications
Optical Materials
◽
10.1016/j.optmat.2021.111112
◽
2021
◽
Vol 117
◽
pp. 111112
Author(s):
Yasha Tayal
◽
A.S. Rao
Keyword(s):
Spectroscopic Analysis
◽
Borosilicate Glasses
◽
Photonic Device
◽
Device Applications
Download Full-text
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Influence of Tb3+ ions concentration and temperature on lithium bismuth alumino borosilicate glasses for green photonic device applications
Optical Materials
◽
10.1016/j.optmat.2021.111439
◽
2021
◽
Vol 120
◽
pp. 111439
Author(s):
Mohit Kumar
◽
A.S. Rao
Keyword(s):
Borosilicate Glasses
◽
Photonic Device
◽
Device Applications
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Photoluminescence down-shifting studies of thermally stable Eu3+ ions doped borosilicate glasses for visible red photonic device applications
Journal of Non-Crystalline Solids
◽
10.1016/j.jnoncrysol.2021.121184
◽
2022
◽
Vol 575
◽
pp. 121184
Author(s):
Rajat Bajaj
◽
A.S. Rao
◽
G. Vijaya Prakash
Keyword(s):
Thermally Stable
◽
Borosilicate Glasses
◽
Photonic Device
◽
Device Applications
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Effective sensitization of Eu3+ visible red emission by Sm3+ in thermally stable potassium zinc alumino borosilicate glasses for photonic device applications
Journal of Luminescence
◽
10.1016/j.jlumin.2021.118689
◽
2021
◽
pp. 118689
Author(s):
Ravita
◽
A. S.Rao
Keyword(s):
Thermally Stable
◽
Borosilicate Glasses
◽
Red Emission
◽
Photonic Device
◽
Device Applications
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MBE Growth for Electronic and Photonic Device Applications.
10.21236/ada299217
◽
1995
◽
Author(s):
Ben G. Streetman
Keyword(s):
Mbe Growth
◽
Photonic Device
◽
Device Applications
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Comments on “Investigation on synthesis, laser damage threshold, and NLO properties of l-asparagine thioacetamide single crystal for photonic device applications” [J Mater Sci: Mater Electron. 31, 13310–13320 (2020)]
Journal of Materials Science Materials in Electronics
◽
10.1007/s10854-021-06014-1
◽
2021
◽
Author(s):
Bikshandarkoil R. Srinivasan
◽
Megha S. Deshpande
Keyword(s):
Single Crystal
◽
Damage Threshold
◽
Laser Damage Threshold
◽
Laser Damage
◽
Nlo Properties
◽
Photonic Device
◽
Device Applications
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Highly oriented and ordered semiconductor nanowire arrays for photonic device applications
10.1117/12.629906
◽
2005
◽
Author(s):
Z. H. Wu
◽
J. Gierak
◽
E. Bourhis
◽
A.-L. Biance
◽
H. E. Ruda
Keyword(s):
Nanowire Arrays
◽
Semiconductor Nanowire
◽
Photonic Device
◽
Device Applications
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Optical characterization of Eu 3+ ion doped alkali oxide modified borosilicate glasses for red laser and display device applications
Ceramics International
◽
10.1016/j.ceramint.2017.04.024
◽
2017
◽
Vol 43
(12)
◽
pp. 8886-8892
◽
Cited By ~ 17
Author(s):
B. Naveen Kumar Reddy
◽
B. Devaprasad Raju
◽
K. Thyagarajan
◽
R. Ramanaiah
◽
Young-Dahl Jho
◽
...
Keyword(s):
Optical Characterization
◽
Display Device
◽
Borosilicate Glasses
◽
Alkali Oxide
◽
Device Applications
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Spectroscopic and Structural Properties of Yb3+-Doped and Undoped 2D-Mos2 Thin Films for Optoelectronic and Photonic Device Applications
2019 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC)
◽
10.1109/cleoe-eqec.2019.8872550
◽
2019
◽
Author(s):
C. Maddi
◽
J. R. Aswin
◽
K. V. Adarsh
◽
A. J. Scott
◽
Animesh Jha
Keyword(s):
Thin Films
◽
Structural Properties
◽
Photonic Device
◽
Device Applications
Download Full-text
Effect of network modifier ZnO on the dielectric studies of lithium boro Tellurite glasses for battery and photonic device applications
10.1063/1.5130217
◽
2019
◽
Author(s):
Pallati Naresh
◽
S. Aswini Priya
◽
P. Murali Mohan
◽
B. Kavitha
◽
N. Narsimlu
◽
...
Keyword(s):
Tellurite Glasses
◽
Dielectric Studies
◽
Network Modifier
◽
Photonic Device
◽
Device Applications
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Spectroscopic investigations on Dy3+ ions doped zinc lead alumino borate glasses for photonic device applications
Journal of Rare Earths
◽
10.1016/j.jre.2018.04.013
◽
2019
◽
Vol 37
(1)
◽
pp. 52-59
◽
Cited By ~ 7
Author(s):
Nisha Deopa
◽
Shubham Saini
◽
Sumandeep Kaur
◽
Aman Prasad
◽
A.S. Rao
Keyword(s):
Borate Glasses
◽
Photonic Device
◽
Spectroscopic Investigations
◽
Device Applications
Download Full-text
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