Lecture Description
Professor Bailyn begins with a summary of the four post-Newtonian effects of general relativity that were introduced and explained last time: precession of the perihelion, the deflection of light, the gravitational redshift, and gravitational waves. The concept of gravitational lensing is discussed as predicted by Einstein's general relativity theory. The formation of a gravitational lens can be observed when light from a bright distant source bends around a massive object between the source (such as a quasar) and the observer. Professor Bailyn then offers a slideshow of gravitational lenses. The issue of finding suitable astronomical objects that lend the opportunity to observe post-Newtonian relativistic effects is addressed. The lecture ends with Jocelyn Bell and the discovery of pulsars.
Course Index
- Introduction
- Planetary Orbits
- Our Solar System and the Pluto Problem
- Discovering Exoplanets: Hot Jupiters
- Planetary Transits
- Microlensing, Astrometry and Other Methods
- Direct Imaging of Exoplanets
- Introduction to Black Holes
- Special and General Relativity
- Tests of Relativity
- Special and General Relativity (cont.)
- Stellar Mass Black Holes
- Stellar Mass Black Holes (cont.)
- Pulsars
- Supermassive Black Holes
- Hubble's Law and the Big Bang
- Hubble's Law and the Big Bang (cont.)
- Hubble's Law and the Big Bang (cont.)
- Omega and the End of the Universe
- Omega and the End of the Universe
- Dark Matter
- Dark Energy and the Accelerating Universe and the Big Rip
- Supernovae
- Other Constraints: The Cosmic Microwave Background
- The Multiverse and Theories of Everything
Course Description
In this course, Yale Prof. Charles Bailyn focuses on three particularly interesting areas of astronomy that are advancing very rapidly: Extra-Solar Planets, Black Holes, and Dark Energy. Particular attention is paid to current projects that promise to improve our understanding significantly over the next few years. The course explores not just what is known, but what is currently not known, and how astronomers are going about trying to find out.
This Yale College course, taught on campus twice per week for 50 minutes, was recorded for Open Yale Courses in Spring 2007.