Modern Physics for Scientists and Engineers
Modern Physics for Scientists and Engineers
4th Edition
ISBN: 9781133103721
Author: Stephen T. Thornton, Andrew Rex
Publisher: Cengage Learning
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Chapter 2, Problem 5P
To determine

The time difference after rotating 90° to Michelson interferometer in Michelson Morley experiment.

Expert Solution & Answer
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Answer to Problem 5P

The time difference after rotating 90° to Michelson interferometer will be:

Δt=2c(21v2/c211v2/c2)

Explanation of Solution

As from figure 2.2, total time (t1) taken by the light to travel from source to target (From A to C) and from target to source (From C to A), velocity of the light from A to C is c+v because ether is flowing along with light and from C to A is cv because ether is flowing opposite to light. Therefore,

t1=1c+v+1cv=2c1c2v2=21c(11v2/c2)                                                                                                     (I)

Where, 1 is the optical length from A to C, v is the velocity of the ether, and c is the velocity of the light.

As from figure 2.2, total time (t2) taken by the light to travel from source to target (From A to D) and from target to source (From D to A).

When light travel from A to D, ether will deflect the direction of the light, thus light will not reach to the mirror m2 at D. Therefore, by using the vector triangle, the speed of the light will be c2v2 to reach the mirror m2 as shown in figure 1.

Modern Physics for Scientists and Engineers, Chapter 2, Problem 5P , additional homework tip  1

Therefore,

t2=22c2v2=22c11v2/c2                                                                                                     (II)

Where, 2 is the optical length from A to D.

The time difference between two journey before rotating the Michelson interferometer is as follows:

Δt=t2t1

Substituting the values of t1 and t2 from equation (I) and (II) in above equation. Therefore,

Δt=t2t1=22c11v2/c221c(11v2/c2)                                                            =2c(21v2/c211v2/c2)        (III)

After rotating 90° to Michelson interferometer the optical length l2 and l1 will be interchanged and rest of the quantities will be same and direction of the flow of the ether will be in the direction of the l2.

Therefore, from Galilean transformation velocity of the light along the l2 (from A to D)  will be c+v and for return trip(from D to A) will be cv. Therefore, total time taken by light to complete the round-trip journey from A to D is t2

t'2=2c+v+2cv                                                                                             =2c2c2v2=22c(11v2/c2)        (IV)

When light travel from A to C, ether will deflect the direction of the light, thus light will not reach to the mirror m1 at C.

Therefore, by using the vector triangle, the speed of the light will be c2v2 to reach the mirror m1 at C as shown in figure 2:

Modern Physics for Scientists and Engineers, Chapter 2, Problem 5P , additional homework tip  2

Thus, total time taken by light to complete the round-trip journey from A to C is t1.

t'1=21c2v2=21c11v2/c2                                                                                                  (V)

From equation (IV) and (V) time difference between the two journey is Δt'

Δt=t2t1=22c(11v2/c2)21c(11v2/c2)=2c(21v2/c211v2/c2)

Conclusion:

Therefore, the time difference after rotating 90° to Michelson interferometer will be:

Δt=2c(21v2/c211v2/c2).

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