Suppose the perturbation has time dependence: H =Velut for the initial conditions: C. (0) = 1. Ch0)-0 The transition probability is .a (t) 2rw sin (w t), where w=(w -w ab .b Pamole) = Kel cos (m,), where w, = / (w-w)² +(V»/)° 2ho, .c Pa-o(0) = sin (m,t), where w, =V (w-m)²+(Vo/} .d where o, = (w-w)² +(V»/+)² 2ho,
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Q: can you please ans (c)?
A: E=-dVdrE=-ddrq4π∈0a0exp-2ra01+a0rE=q2πa02exp-2ra0-3
![Suppose the perturbation has time dependence:
H = Veut, for the initial conditions: Ca (0) = 1.
2
Ch(0) = 0
%3!
The transition probability is
.a
sin (w t), where
w =(w -w
(t):
ab
2rw
ab
.b
Pa-olt) =|
2ho,
cos (m,t), where w, =/ (@-w)² +(V»/)°
.C
Pamol) = sin (0,t), where w, = (@-w,)² +(V»/+)°
.d
Pa-b(t) =
, where w, =(w-j²+(Væ/#)²](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F19b6ddbe-1ad4-49c6-81c3-ea643899a235%2F5a0de1bd-f445-4515-a256-57e87dfd419e%2Fk6cn3jw_processed.jpeg&w=3840&q=75)
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