Pb-9 Calculate the threshold of population inversion for ruby laser 1=694.3nm if the mirrors' reflectivities are R1=R2=0.9and the life time for spontaneous emission is (Tsp = 3×10³s) length of the laser medium is 5 cm and its refractive index is 1.7 Assume the line shape function (g(v) = 1.1×10¯¹²s) and neglect the coefficient of internal losses.
Pb-9 Calculate the threshold of population inversion for ruby laser 1=694.3nm if the mirrors' reflectivities are R1=R2=0.9and the life time for spontaneous emission is (Tsp = 3×10³s) length of the laser medium is 5 cm and its refractive index is 1.7 Assume the line shape function (g(v) = 1.1×10¯¹²s) and neglect the coefficient of internal losses.
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![Pb-9
Calculate the threshold of population inversion for ruby laser 1=694.3nm if the
mirrors' reflectivities are R1=R2=0.9and the life time for spontaneous emission is
(Tsp = 3×10³s) length of the laser medium is 5 cm and its refractive index is 1.7 Assume
the line shape function (g(v) = 1.1×10¯¹²s) and neglect the coefficient of internal losses.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F57858ba2-dfb6-4b1c-bf35-9219201e7203%2F7d0ee71c-6403-4999-b70f-20c7d845ce1b%2Fc1s5leg_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Pb-9
Calculate the threshold of population inversion for ruby laser 1=694.3nm if the
mirrors' reflectivities are R1=R2=0.9and the life time for spontaneous emission is
(Tsp = 3×10³s) length of the laser medium is 5 cm and its refractive index is 1.7 Assume
the line shape function (g(v) = 1.1×10¯¹²s) and neglect the coefficient of internal losses.
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