Gravitational Perturbation Theory and Synchrotron Radiation
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		    OF CONTENTS
 
 Page LISTS
 
 I.
 
 II.
 
 OF F I G U R E S
 
 Gravity
 
 Experiments.
 
 Wave
 
 FOCUSSING
 
 MECHANISMS
 
 RELATIVISTIC
 
 Lens
 
 Focussing.
 
 rotating
 
 Observers.
 
 ORDINARY
 
 SYNCHROTRON
 
 Spacetime.
 
 in t h e
 
 in the K e r r
 
 Scalar
 
 The
 
 Penrose
 
 dependent
 
 Metric
 
 Naked
 
 non-
 
 Theory
 
 General
 
 & Penrose.
 
 Perturbations
 
 ....................... Radiation
 
 Theory
 
 The
 
 Perturbation
 
 Held
 
 16
 
 Spacetime.
 
 30
 
 in F l a t Synchrotron
 
 ..........................
 
 and Point
 
 Perturbation
 
 Formalism.
 
 of Geroch,
 
 11
 
 Discussion.
 
 linearized
 
 of P e r t u r b a t i o n s .
 
 Regge-Wheeler
 
 .....
 
 Locally
 
 & Gravitational
 
 Spacetime.
 
 Introduction.
 
 turbations.
 
 Spacetime.
 
 Synchrotron
 
 Electromagnetic in F l a t
 
 Gauge
 
 Focussing.
 
 Schwarzschild
 
 RADIATION
 
 OF SPACETIMES
 
 finition
 
 RADIATION
 
 Discussion.
 
 PERTURBATIONS
 
 Point
 
 Summary.
 
 ...............................
 
 Geodesics
 
 Geodesics
 
 Radiation
 
 Disk
 
 V
 
 Discussion.
 
 Circular
 
 Introduction.
 
 Motivation.
 
 FOR GRAVITATIONAL
 
 GEODESICS
 
 Introduction.
 
 V.
 
 ..........................
 
 .........................................
 
 Singularities.
 
 IV.
 
 TABLES
 
 INTRODUCTION
 
 Introduction.
 
 III.
 
 AND
 
 of G r a v i t y .
 
 Linearization Gauge and
 
 De-
 
 Procedure.
 
 independent
 
 Per-
 
 Regge-Calculus.
 
 Technique.
 
 The Newman-
 
 Relativity
 
 in the F o r m a l i s m
 
 Tetrad
 
 Revised.
 
 Gauge
 
 Transformations.
 
 45
 
 IV
 
 VI.
 
 DECOUPLED
 
 SEPARATED
 
 &
 
 EQUATIONS
 
 .........
 
 Introduction.
 
 The D e c o u p l i n g
 
 of the P e r t u r b a t i o n
 
 tions.
 
 Perturbations.
 
 Electromagnetic
 
 Scalar
 
 bations.
 
 Gravitational
 
 Equations.
 
 Coordinate
 
 GHP Operators. teness
 
 Perturbations. Systems,
 
 Separation
 
 Function
 
 Spheroidal
 
 Solution.
 
 Harmonics.
 
 Spin-Weighted Expansion
 
 Boundary
 
 Spheroidal
 
 POLARIZATION
 
 &
 
 Radial
 
 Spherical
 
 Expansion
 
 &
 
 of
 
 High Frequency
 
 Spheroidal
 
 Harmonics.
 
 ......................................... Stokes
 
 Jones Vector.
 
 Electromagnetic
 
 Gravitational
 
 Stokes
 
 Transfer
 
 Parameters
 
 Master
 
 Comple-
 
 Conditions.
 
 Spin-Weighted
 
 Introduction.
 
 Radiative
 
 Equation.
 
 Harmonics.
 
 of S p i n - W e i g h t e d
 
 Pertur-
 
 Decoupled
 
 Low F r e q u e n c y
 
 Parameters,
 
 Poincar6
 
 Stokes
 
 Parameters.
 
 for the Most General
 
 117
 
 Sphere,
 
 Parameters.
 
 The E q u a t i o n
 
 for P o l a r i z e d
 
 77
 
 Equa-
 
 Spin-Coefficients
 
 of M a s t e r
 
 of E i g e n f u n c t i o n s .
 
 Green's
 
 Vll.
 
 PERTURBATION
 
 Radiation. Metric
 
 of
 
 Stokes
 
 Theory
 
 of
 
 Gravity.
 
 VIII.
 
 GEODESIC
 
 SYNCHROTRON
 
 Introduction.
 
 Scalar
 
 High F r e q u e n c y
 
 IX.
 
 Master Power
 
 of
 
 sU(r)
 
 Electromagnetic
 
 Gravitational
 
 DISCUSSIONS
 
 .......................
 
 GSR in the S c h w a r z s c h i l d
 
 Approximation
 
 in the Kerr Geometry. Geometry.
 
 RADIATION
 
 and
 
 Geometry. sS(~/2,0)
 
 GSR in the Kerr
 
 GSR in the Kerr Geometry.
 
 ..........................................
 
 Formula
 
 for Power
 
 Spectra. L i m i t a t i o n s
 
 Open Questions
 
 ACKNOWLEDGMENTS
 
 139
 
 Spectra.
 
 Spin D e p e n d e n c e
 
 of Test P a r t i c l e
 
 in G r a v i t a t i o n a l
 
 Radiation
 
 GSR.
 
 171
 
 of Some
 
 Theory.
 
 ......................................		
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