63
NSF_ANSI 55-2015_ Ultraviolet Microbiological Water Treatment Systems.pdf
AESOPCOVER SHEET IMAGEDOCUMENTSAESOP 2380; ISSUE 13; STATUS-PUBLISHED; EFFECTIVE 18 DEC 2015COVER SH
436
EPA-Ultraviolet disinfection guidance manual for the final long term 2 enhanced surface water treatment ruleL.pdf
ULTRAVIOLETDISINFECTION GUIDANCE MANUAL FINALLONG TERM ENHANCEDSURFACE WATER TREATMENT RULE Office W
4
Extreme Ultraviolet Lithography.pdf
Extreme Ultraviolet Lithography
36
ULTRAVIOLET AND VISIBLE SPECTROSCOPY.pdf
ULTRAVIOLET AND VISIBLE SPECTROSCOPY
12
Dependence of ultraviolet absorbers´ performance on ultraviolet wavelength.pdf
Dependence of ultraviolet absorbers´ performance on ultraviolet wavelength
254
Metrology Supporting Extreme Ultraviolet Lithography...........pdf
Metrology Supporting Extreme Ultraviolet Lithography........................
56
Molecular SpectroscopyVisible and Ultraviolet Spectroscopy.ppt
Molecular SpectroscopyVisible and Ultraviolet SpectroscopyMolecular SpectroscopyVisible and Ultraviolet SpectroscopyMolecular SpectroscopyVisible and Ultraviolet Spectroscopy
3
Nanowire ultraviolet photodetectors and optical switches.pdf
Nanowire ultraviolet photodetectors and optical switchesNanowire ultraviolet photodetectors and optical switchesNanowire ultraviolet photodetectors and optical switches
9
Tabletop Lasers in the Extreme Ultraviolet.pdf
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3
Room-temperature ultraviolet laser emission from.pdf
Room-temperature ultraviolet laser emission from self-assembled ZnO microcrystallite thin films
Room-temperature ultraviolet ~UV! laser emission of ZnO microcrystallite thin films is reported.
The hexagonal ZnO microcrystallites are grown by laser molecular beam epitaxy. They are
self-assembled and parallelly arrayed on sapphire substrates. The facets of the hexagons form
natural Fabry–Pe ´rot lasing cavities. The optical gain for the room-temperature UV stimulated
emission is of an excitonic nature and has a peak value an order of magnitude larger than that of
bulk ZnO crystal. The observation of room-temperature UV lasing from the ordered, nano-sized
ZnO crystals represents an important step towards the development of nanometer photoelectronics.
© 1998 American Institute of Physics. @S0003-6951~98!03325-7

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