Neutron Stars and Black Holes - Radiation from Relativistic Particles - Lecture 5

Neutron Stars and Black Holes - Radiation from Relativistic Particles - Lecture 5

International Centre for Theoretical Sciences via YouTube Direct link

Synchrotron Radiation - Spectrum

21 of 31

21 of 31

Synchrotron Radiation - Spectrum

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Neutron Stars and Black Holes - Radiation from Relativistic Particles - Lecture 5

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  1. 1 Time: AM
  2. 2 Neutron Stars and Black Holes Lecture - 5: Radiation from Relativistic Particles
  3. 3 Radiation from Relativistic Particles
  4. 4 Maxwell's Equations
  5. 5 Dipole approximation
  6. 6 Specific Intensity Iv
  7. 7 Energy Flux and Intensity of Radiation
  8. 8 Intensity of Radiation
  9. 9 LARMOR's Formula
  10. 10 Angular distribution
  11. 11 Dipole approximation
  12. 12 Polarization of the Radiation from a nonrelativistic charge
  13. 13 Theorem
  14. 14 Quadrupole and Magnetic Dipole Radiation
  15. 15 Gravitational radiation
  16. 16 Spectral Resolution
  17. 17 Radiation from relativistic particles
  18. 18 Angular Distribution - Relativistic case
  19. 19 PULSED radiation from relativistic particles
  20. 20 Synchrotron Radiation
  21. 21 Synchrotron Radiation - Spectrum
  22. 22 A charge gyrating in a magnetic field
  23. 23 Radiation from an ensemble of particles
  24. 24 Radio spectrum of a supernova remnant
  25. 25 Synchrotron Lifetime
  26. 26 Synchrotron self-absorption
  27. 27 Landau levels in a magnetic field
  28. 28 Synchrotron self absorption in compact SUPERLUMINAL SOURCE
  29. 29 Pulsars, Supernova Remnants and Radio Galaxies
  30. 30 Next Lecture - Pulsars
  31. 31 Q&A

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