Konstantin Ladutenko 7 年之前
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共有 1 個文件被更改,包括 2 次插入2 次删除
  1. 2 2
      main.tex

+ 2 - 2
main.tex

@@ -508,7 +508,7 @@ license.
    radii $R = 75$ nm (a-d), $R = 100$ nm (e-h) and $R = 115$ nm (i-l)
    taken at different times and conditions of excitation (stages
    $1-4$: (1) first optical cycle, (2) extremum at few optical cycles,
-   (3) Mie theory, (4) nonlinear effects). Pulse duration $50\:f\!s$
+   (3) Mie theory, (4) nonlinear effects). Pulse duration $50$~\textit{fs}
    (FWHM). Wavelength $800$ nm in air. Peak laser fluence is fixed to
    be $0.125$ J/cm$^2$.}
  \end{figure*}
@@ -520,7 +520,7 @@ license.
    of the average EHP density in the front part of the nanoparticle
    (a, c, e) and time (b, d, f) for different Si nanoparticle radii
    (a, b) $R = 75$ nm, (c, d) $R = 100$ nm, (e, f) $R = 115$ nm. Pulse
-   duration $50\:f\!s$ (FWHM). Wavelength $800$ nm in air. (a, c, e)
+   duration $50$~\textit{fs} (FWHM). Wavelength $800$ nm in air. (a, c, e)
    Different stages of EHP evolution shown in \ref{fig2} are
    indicated. (b, d, f) The temporal evolution of Gaussian beam
    intensity is also shown. Peak laser fluence is fixed to be $0.125$