The role of magnetic component of a strong light field in electrostrictive effect

Abstract

Electrostriction forces during laser ablation have been studied both theoretically and experimentally. The components of electroctrostriction force for inhomogeneous electromagnetic field near a substrate were proposed to be taken similarly to those in gases within nonresonant spectral region. Nonzero Lorentz force in standing light wave was found to be responsible for different morphology of the nanostructured surface as compared to etching the transient substrate. Our experiments were performed using the femtosecond laser focused on polished glass and Al-coated glass surfaces. The treated surfaces were studied using atomic force microscopy with the spatial resolution of 30 nm. Nanoscale patterning of the etched surface spots was explained in the frames of theoretical modeling. Possible spatial locations of electrostriction force components in the Gauss profile laser beam have been also discussed.

Authors and Affiliations

L. V. Poperenko

Keywords

Related Articles

Structure and Raman spectra of (Cu6PS5I)1–x(Cu7PS6)x mixed crystals

Mixed (Cu6PS5I)1–x(Cu7PS6)x crystals were grown using a direct crystallization technique. Being based on the X-ray diffraction data, their crystal structure was studied, showing face-centred cubic lattice for Cu6PS5I-ric...

Carbon ceramics from plants: Graphitization of biomorphic matrixes

Properties of matrixes obtained from plants at various pyrolysis temperatures have been discussed. The article is devoted to graphitization of carbon matrixes obtained from plants. All stages of production, starting from...

Optimization of surface plasmon resonance based biosensor for clinical diagnosis of the Epstein–Barr herpes virus disease

The influence of the sensitive element fabrication technology and noise performance of surface plasmon resonance (SPR) immunosensor on sensitivity and stability of operation inherent to the “Plasmon” series instrument ha...

Drift correction of the analyzed area during the study of the lateral elemental composition distribution in single semiconductor nanostructures by scanning Auger microscopy

The main difficulty in obtaining the lateral elemental composition distribution maps of the semiconductor nanostructures by Scanning Auger Microscopy is the thermal drift of the analyzed area, arising from its local heat...

Protective applications of vacuum-deposited perfluoropolymer films

The paper summarizes in brief applications of perfluoropolymer thin films deposited from the gas phase by several different methods, for protection of various materials and devices both at the research stage and already...

Download PDF file
  • EP ID EP415991
  • DOI 10.15407/spqeo21.02.160
  • Views 65
  • Downloads 0

How To Cite

L. V. Poperenko (2018). The role of magnetic component of a strong light field in electrostrictive effect. Semiconductor Physics, Quantum Electronics and Optoelectronics, 21(2), 160-166. https://europub.co.uk/articles/-A-415991