Added captions for images
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@@ -98,8 +98,9 @@ It can be seen from the graph that when the particle is displaced from the equil
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In the same way, forces acting in the lateral plane can be obtained. Here we consider the $Y$ axis, but the same consideration is valid for displacement along any direction in a plane perpendicular to the direction of the laser beam. However, in this case, new angles appear, shown in Fig. 6.
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*Test Caption*
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|Fig. 6. (A) the geometry of the trap with a focus $f$ located at a distance of $S'$ along $Y$ axis from the center of the sphere $O$. (B) Geometry of the plane of incidence, showing the direction of the gradient force $F_g$ and scatter force $F_s$ for the incident beam|
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They are determined by the following formulas:
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