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pro vyhledávání: '"Aaron Ediger"'
Autor:
Mark Anderson, Graham Kaufman, Aaron Ediger, Dennis Alexander, Craig Zuhlke, Jeffrey E. Shield
Publikováno v:
Materials Today Advances, Vol 19, Iss , Pp 100412- (2023)
Modification of surfaces with ultrashort pulse laser surface processing techniques has shown to enhance surface properties for numerous applications. To more effectively tailor material properties, there needs to be a better understanding of the self
Externí odkaz:
https://doaj.org/article/bd99a37f5aae4f23b3250f4a5786bd71
Autor:
Dennis R. Alexander, George Gogos, Craig Zuhlke, Justin Costa-Greger, Aaron Ediger, Jeffrey E. Shield, Mark R. Anderson
Publikováno v:
Thermal Science and Engineering Progress. 27:101105
Improving the heat transfer characteristics of materials can be accomplished by increasing the surface area. This surface roughening can be accomplished efficiently and directly using pulsed-laser processing. Here, laser processing of copper using a
Autor:
Alfred Tsubaki, Dennis R. Alexander, Craig Zuhlke, George Gogos, Corey Kruse, Aaron Ediger, Edwin Peng, Jeffrey E. Shield, Nick Roth, Mark R. Anderson
Publikováno v:
Laser-based Micro- and Nanoprocessing XIII.
The use of self-organized micro/nanostructured surfaces formed using femtosecond laser surface processing (FLSP) techniques has become a promising area of research for enhancing surface properties of metals, with many applications including enhancing
Autor:
Mark R. Anderson, Alfred Tsubaki, Jeffrey E. Shield, Dennis Alexander, Craig Zuhlke, George Gogos, Aaron Ediger
Publikováno v:
Surface and Coatings Technology. 409:126872
A comparison is made between the self-organized surface features that form on copper using femtosecond versus picosecond laser pulses. Modification of material surfaces (like metals and dielectrics) have shown to affect the properties for application
Autor:
Matthew Hilfiker, Joshua S. Edgar, Scott A. Darveau, C.J. Curry, Aaron Ediger, Qinglei Ma, Christopher L. Exstrom, Michael P. Hanrahan, Natale J. Ianno
Publikováno v:
MRS Advances. 1:2821-2826
WSe2 films have been fabricated using a low-temperature, two-step method involving the reaction of W(CO)6 and elemental selenium in refluxing (110 °C) toluene to form a nanocrystalline precursor consisting of amorphous tungsten and trigonal crystall