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Polarization-dependent femtosecond laser ablation of poly-methyl methacrylate

dc.contributor.authorGuay, J-M
dc.contributor.authorVillafranca, A
dc.contributor.authorBaset, F
dc.contributor.authorPopov, K
dc.contributor.authorRamunno, L
dc.contributor.authorBhardwaj, VR
dc.date.accessioned2013-03-19T17:20:38Z
dc.date.available2013-03-19T17:20:38Z
dc.date.created2012
dc.date.issued2012
dc.description.abstractWe show that ablation features in poly-methyl methacrylate (PMMA) induced by a single femtosecond laser pulse are imposed by light polarization. The ablation craters are elongated along the major axis of the polarization vector and become increasingly prominent as the pulse energy is increased above the threshold energy. We demonstrate ~40% elongation for linearly and elliptically polarized light in the fluence range of 4–20 J cm−2, while circularly polarized light produced near circular ablation craters irrespective of pulse energies. We also show that irradiation with multiple pulses erases the polarization-dependent elongation of the ablation craters. However, for line ablation the orientation of the electric field vector is imprinted in the form of quasi-periodic structures inside the ablated region. Theoretically, we show that the polarization dependence of the ablation features arises from a local field enhancement during light–plasma interaction. Simulations also show that in materials with high nonlinearities such as doped PMMA, in addition to conventional explosive boiling, sub-surface multiple filamentation can also give rise to porosity.
dc.identifier.doi10.1088/1367-2630/14/8/085010
dc.identifier.urihttp://hdl.handle.net/10393/23963
dc.identifier.urihttp://iopscience.iop.org/1367-2630/14/8/085010/article
dc.language.isoen
dc.subjectOptics
dc.subjectQuantum optics and lasers
dc.subjectPlasma physics
dc.subjectCondensed matter - structural, mechanical & thermal
dc.titlePolarization-dependent femtosecond laser ablation of poly-methyl methacrylate
dc.typeArticle

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