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@ -187,9 +187,11 @@ heat sources (e.g. laser heating in ablation simulations):
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</P>
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<CENTER><IMG SRC = "Eqs/fix_ttm_mod.jpg">
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</CENTER>
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<P>where I_0 is the (absorbed) laser pulse intensity for ablation
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simulations, l_skin is the depth of skin-layer, and all other
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designations have the same meaning as in the former equation.
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<P>where theta is the Heaviside step function, I_0 is the (absorbed)
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laser pulse intensity for ablation simulations, l_skin is the depth
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of skin-layer, and all other designations have the same meaning as in
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the former equation. The duration of the pulse is set by the parameter
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<I>tau</I> in the <I>init_file</I>.
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</P>
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<P>Fix ttm/mod also allows users to specify the dependencies of C_e and
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kappa_e on the electronic temperature. The specific heat is expressed
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@ -176,9 +176,11 @@ heat sources (e.g. laser heating in ablation simulations):
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:c,image(Eqs/fix_ttm_mod.jpg)
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where I_0 is the (absorbed) laser pulse intensity for ablation
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simulations, l_skin is the depth of skin-layer, and all other
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designations have the same meaning as in the former equation.
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where theta is the Heaviside step function, I_0 is the (absorbed)
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laser pulse intensity for ablation simulations, l_skin is the depth
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of skin-layer, and all other designations have the same meaning as in
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the former equation. The duration of the pulse is set by the parameter
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{tau} in the {init_file}.
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Fix ttm/mod also allows users to specify the dependencies of C_e and
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kappa_e on the electronic temperature. The specific heat is expressed
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