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POPULATION INVERSION
Presented by.,
S.Shanmathee.,
What is Meant by Population Inversion??
๏ƒผ It is the condition required for light amplification.
๏ƒผ Non-Equilibrium distribution of atoms among
various energy levels of the atomic system.
๏ƒผ The Boltzmann distribution which applies to the
system in thermal equilibrium is.,
Where., =Population Intensity of the jth
energy level
If Ej increases Nj decreases with
constant tempurature
๏ƒฅ ๏€ญ
๏€ญ
๏€ฝ
)/exp(
)/exp(0
kTEg
kTENg
N
ii
jj
j
jN
Populations of two level energy systems
At thermal equilibrium After population
inversion has
been produced
Pumping
โ€ข If the energy difference between E1 and E2 is equals
to kT(nearly 0.025eV at room temp).
โ€ข Then the population inversion of the upper level
would be 1/e(0.37) of that of the lower level.
โ€ข For large energy difference then visible radiation
will be(2.0eV).then population of the upper level is
negligible.
โ€ข So to achieve population inversion we need to
supply large amount of energy to excite atoms into
E2.
โ€ข This process named as โ€œPUMPINGโ€.
Cont..
โ€ข This pumping energy can be supplied by
using laser technologies.
โ€ข Pumping produces the non-equilibrium
situation.
Attainment of population inversion
โ€ข Main method used to achieve this population
inversion is โ€œstimulated absorptionโ€
โ€ข The energy levels are pumped by intense
irradiation of the system.
โ€ข Assume g1 = g2 .then further absorption and
emissions are equal.(two level)
โ€ข For three level system proposed by
bloembergen. Initially it obeys boltzmannโ€™s law.
โ€ข If the collection of atoms is illumination the
electrons can be excited(i.e pumped) into E2
form E0 .
Cont..
โ€ข From E2 electrons decay by non-radiative
processes to the level E1 and Population
inversion created b/w E1 and E0 .
Boltzmann distribution
before pumping
distribution after pumping
and the transitions
Cont..
โ€ข E2 to E1 =rapid transition.
โ€ข E1 to E0 =slow transition.(E1 is metastable
state)
โ€ข This will create the built-up of atoms in E1 then
population inversion achieved b/w E1 and E0 .
( N1 > N0 )
โ€ข Examples :ruby โ€“requires very high pump
powers.
Four level system
Before pumping After pumping
Cont..
โ€ข It has less pumping requirements.
โ€ข If ( E1 โ€“ E0 ) is very large compare to kT then
populations at E1 , E2 and E3 are very small at
thermal equilibrium.
โ€ข If atoms pumped to E3 from ground state from
rapid transition occur to E2. population inversion
achieved b/w E2 and E1 .
โ€ข If lifetime is short between E3 ๏ƒ  E2 and
E1 ๏ƒ  E0 are short population inversion
maintained between E2 &E1 .
Other ways to achieve pumping
โ€ข Optical pumping
โ€ข Electrical discharge or electron bombardment.
โ€ข The release of chemical energy.
โ€ข The passage of current.
Population inversion

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Population inversion

  • 2. What is Meant by Population Inversion?? ๏ƒผ It is the condition required for light amplification. ๏ƒผ Non-Equilibrium distribution of atoms among various energy levels of the atomic system. ๏ƒผ The Boltzmann distribution which applies to the system in thermal equilibrium is., Where., =Population Intensity of the jth energy level If Ej increases Nj decreases with constant tempurature ๏ƒฅ ๏€ญ ๏€ญ ๏€ฝ )/exp( )/exp(0 kTEg kTENg N ii jj j jN
  • 3. Populations of two level energy systems At thermal equilibrium After population inversion has been produced
  • 4. Pumping โ€ข If the energy difference between E1 and E2 is equals to kT(nearly 0.025eV at room temp). โ€ข Then the population inversion of the upper level would be 1/e(0.37) of that of the lower level. โ€ข For large energy difference then visible radiation will be(2.0eV).then population of the upper level is negligible. โ€ข So to achieve population inversion we need to supply large amount of energy to excite atoms into E2. โ€ข This process named as โ€œPUMPINGโ€.
  • 5. Cont.. โ€ข This pumping energy can be supplied by using laser technologies. โ€ข Pumping produces the non-equilibrium situation.
  • 6. Attainment of population inversion โ€ข Main method used to achieve this population inversion is โ€œstimulated absorptionโ€ โ€ข The energy levels are pumped by intense irradiation of the system. โ€ข Assume g1 = g2 .then further absorption and emissions are equal.(two level) โ€ข For three level system proposed by bloembergen. Initially it obeys boltzmannโ€™s law. โ€ข If the collection of atoms is illumination the electrons can be excited(i.e pumped) into E2 form E0 .
  • 7. Cont.. โ€ข From E2 electrons decay by non-radiative processes to the level E1 and Population inversion created b/w E1 and E0 . Boltzmann distribution before pumping distribution after pumping and the transitions
  • 8. Cont.. โ€ข E2 to E1 =rapid transition. โ€ข E1 to E0 =slow transition.(E1 is metastable state) โ€ข This will create the built-up of atoms in E1 then population inversion achieved b/w E1 and E0 . ( N1 > N0 ) โ€ข Examples :ruby โ€“requires very high pump powers.
  • 9. Four level system Before pumping After pumping
  • 10. Cont.. โ€ข It has less pumping requirements. โ€ข If ( E1 โ€“ E0 ) is very large compare to kT then populations at E1 , E2 and E3 are very small at thermal equilibrium. โ€ข If atoms pumped to E3 from ground state from rapid transition occur to E2. population inversion achieved b/w E2 and E1 . โ€ข If lifetime is short between E3 ๏ƒ  E2 and E1 ๏ƒ  E0 are short population inversion maintained between E2 &E1 .
  • 11. Other ways to achieve pumping โ€ข Optical pumping โ€ข Electrical discharge or electron bombardment. โ€ข The release of chemical energy. โ€ข The passage of current.