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Explain the principle and working of cyclotron with the help of a neat diagram. Write the expression for cyclotron frequency.

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Cyclotron: Cyclotron is a device used to accelerate charged particles to high energies.

Principle: Cyclotron works on the principle that a charged particle moving normal to a magnetic field experiences magnetic lorentz force due to which the particle moves in a circular path.

Working: When a positive ion of charge q and mass m is emitted from the source, it is accelerated towards the Dee having a negative potential at that instant of time. Due to the normal magnetic field, the ion experiences magnetic lorentz force and moves in a circular path. By the time the ion arrives at the gap between the Dees, the polarity of the Dees gets reversed.

Hence the particles is once again accelerated and moves into the other Dee with a greater velocity along a circle of greater radius. Thus the particle moves in a spiral path of increasing radius and when it comes near the edge, it is taken out with the help of a deflection plate (D.P.). The particle with high energy is now allowed to hit the target T.

When the particle moves along a circle of radius r with a velocity v, the magnetic Lorentz force provides the necessary centripetal force.

\(Bqv = \frac {mv^2}r\)

\(\frac vr = \frac{Bq}m = constant\)  ......(1)

The time taken to describe a semi-circle

\(t = \frac {\pi r}v\)     ......(2)

Substituting equation (1) in (2)

\(t = \frac {\pi m}{Bq}\)   ......(3)

It is clear from equation (3) that the time taken by the ion to describe a semi-circle is independent of (i) the radius (r) of the path and (ii) the velocity (v) of the particle.

Hence, period of rotation T = 2t

\(\therefore T = \frac{2\pi m}{Bq} = constant\)    ......(4)

So, in a uniform magnetic field, the ion traverses all the circles in exactly the same time. The frequency of rotation of the particle,

\(v = \frac 1T= \frac {Bq}{2\pi m}\)    ......(5)

If the high frequency oscillator is adjusted to produce oscillations of frequency as given in equation (5), resonance occurs.

Cyclotron is used to accelerate protons, deutrons and α-particles.

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