Правка разделов «Problem», «Note: Why is the answer in the textbook »

Valter правка от
правка #20761 предыдущая #20759 ← раньше позже →
@@ -1,14 +1,8 @@
−### Statement
−
−$7.2.10.$ [Insert the problem statement]
−
−### Solution
−
### Problem
$7.2.10.$ Where will a thin parallel beam of electrons, accelerated by a potential difference $V_0$, be focused by the electric field created by two concentric spheres of radii $R$ and $R - \Delta$, $\Delta \ll R$? The outer sphere is grounded, the potential of the inner sphere is $V \ll V_0$, and the beam passes through the center of the spheres.
−![К задаче $7.2.10$|410x311, 50%](../../img/7.2.10/Снимок экрана 2026-09-15 225027.png)
+![For problem $7.2.10$|410x311, 50%](../../img/7.2.10/Снимок экрана 2026-09-15 225027.png)
### Solution
@@ -79,7 +73,3 @@Note: Why is the answer in the textbook $2R(V_0/V)^2$?
1. <b>First-order effect zeroes out:</b> Near the apertures, the electric field "bulges" out. Diverging sections of the field appear. According to the integral theorem of electron optics, for any gridless system (where the potential on the axis changes smoothly from one constant to another), the converging effect of the central part of the field is perfectly and completely compensated by the diverging effect of the fringe fields. That is, focusing of the first order of smallness ($V/V_0$) becomes strictly equal to zero.
2. <b>Second-order focusing:</b> Since the first-order effect vanishes, microscopic changes in the longitudinal velocity come into play. Inside the gap, the kinetic energy of the electron changes by $\sim eV$. Because of this, the electron spends different amounts of time in the converging and diverging parts of the aperture field. This time imbalance creates a weak net focusing proportional to the square of the velocity change, i.e., $(V/V_0)^2$. Strict integration of the paraxial ray equation for such a field yields the exact coefficient, leading to the textbook authors' answer $f = 2R(V_0/V)^2$.
−
−#### Answer
−
−[Insert a concise answer or boxed result]