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On femtosecond micromachining of HPHT single-crystal diamond with direct laser writing using tight focusing

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dc.contributor.author Zalloum, Othman H. Y.
dc.contributor.author Parrish, Matthew
dc.contributor.author Terekhov, Alexander
dc.contributor.author Hofmeister, William
dc.date.accessioned 2022-01-18T11:54:32Z
dc.date.accessioned 2022-05-22T08:56:44Z
dc.date.available 2022-01-18T11:54:32Z
dc.date.available 2022-05-22T08:56:44Z
dc.date.issued 2010-06-03
dc.identifier.uri http://localhost:8080/xmlui/handle/123456789/8471
dc.description.abstract We investigate the formation of diversiform micro-/nanostructures in High-Pressure High-Temperature (HPHT) synthetic singlecrystal diamond by tight-focusing 200 fs regeneratively amplified Ti: Sapphire laser pulses centered at λ = 800 nm. Ablated samples of synthetic single crystal nanodiamond and their acetate replicas are analyzed using scanning electron microscopy (SEM). Using pulse energies that are significantly above the threshold for permanent change, it is shown from this work that amplified femtosecond pulses are capable of producing controlled modification of HPHT single-crystal diamond at size scales below the diffraction limit and provided negligible collateral heating and shock-wave damage. This is attributed to the low thermal losses and negligible hydrodynamic expansion of the ablated material during the femtosecond laser pulse. It is shown that low pulse energy is a key factor for the accurate and precise machining of micropattems en_US
dc.language.iso en en_US
dc.publisher The University of Tennessee Space Institute, en_US
dc.subject Laser materials processing en_US
dc.subject Nanostructure fabrication en_US
dc.subject Femtosecond phenomena. en_US
dc.title On femtosecond micromachining of HPHT single-crystal diamond with direct laser writing using tight focusing en_US
dc.type Article en_US


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