This is a dynamic list of persons who have made major contributions to the (mainstream) development of general relativity, as acknowledged by standard texts on the subject. Some related lists are mentioned at the bottom of the page.
A
B
- Robert M L Baker, Jr. (high-frequency gravitational waves),
- James M. Bardeen (Bardeen vacuum, black hole mechanics, gauge-invariant linear perturbations of Friedmann-Lemaître cosmologies),
- Barry Barish (LIGO builder, gravitational-waves observation),
- Robert Bartnik (existence of ADM mass for asymptotically flat vacuums, quasilocal mass),
- Jacob Bekenstein (black hole entropy),
- Vladimir A. Belinsky (BKL conjecture, inverse scattering transform solution generating methods),
- Peter G. Bergmann (constrained Hamiltonian dynamics),
- Bruno Bertotti (BertottiâÂÂRobinson electrovacuum, post-Minskowskian expansions),
- JiÃ
ÂàBiÃÂák (exact solutions of the Einstein field equations),
- Heinz Billing (prototype of laser interferometric gravitational-wave detector),
- George David Birkhoff (Birkhoff's theorem),
- Hermann Bondi (gravitational radiation, Bondi radiation chart, Bondi massâÂÂenergyâÂÂmomentum, LTB dust, maverick models),
- William B. Bonnor (Bonnor beam solution),
- Robert H. Boyer (BoyerâÂÂLindquist coordinates),
- Vladimir Braginsky (gravitational-wave detector, quantum nondemolition (QND) measurement)
- Carl H. Brans (BransâÂÂDicke theory),
- Hubert Bray (Riemannian Penrose inequality),
- Hans Adolph Buchdahl (Buchdahl fluid, Buchdahl theorem),
- Claudio Bunster (BTZ black hole, Surface terms in Hamiltonian formulation),
- Alessandra Buonanno (effective one-body formalism),
- William L. Burke (Burke potential, textbook)
C
- Bernard Carr (self-similarity hypothesis, primordial black holes),
- Brandon Carter (no-hair theorem, Carter constant, black-hole mechanics, variational principle for Ernst vacuums),
- Subrahmanyan Chandrasekhar (Chandrasekhar limit, colliding plane waves, quasinormal modes, relativistic stars, monograph),
- Jean Chazy (Chazy-Curzon vacuum),
- Yvonne Choquet-Bruhat (formerly Yvonne Bruhat; local existence and uniqueness of solutions to the vacuum Einstein equations, initial value formulations, textbook),
- Demetrios Christodoulou (naked singularity in LTB dust, stability of Minkowski vacuum),
- Orest Chwolson (gravitational lensing),
- Alejandro Corichi (fundamental contributions to quantum gravity and loop quantum gravity)
D
- Thibault Damour (effective one-body formalism),
- Georges Darmois (matching conditions, Darmois vacuum),
- Stanley Deser (ADM initial value formulation, effective field theory),
- Bryce DeWitt (WheelerâÂÂDeWitt equation),
- Robert H. Dicke (BransâÂÂDicke theory, parametrized post-Newtonian (PPN) formalism, background radiation),
- Paul A.M. Dirac (graviton, monograph),
- Tevian Dray (asymptotic structure, gravitational shock waves),
- Ronald Drever (LIGO, gravitational-wave detectors and observation)
<br />
E
- Arthur Stanley Eddington (early treatises, relativistic stars, EddingtonâÂÂFinkelstein coordinates, role of curvature, post-Newtonian expansions, early tests and popularization of general relativity),
- Jürgen Ehlers (Ehlers vacuum family, symmetries of pp waves, spacetime view of gravitational lensing, Newtonian limit),
- Albert Einstein (creator of general relativity, principle of equivalence, Einstein field equations, gravitational time dilation, gravitational redshift, gravitational lensing, gravitational waves, perihelion of Mercury, cosmological constant, EinsteinâÂÂInfeldâÂÂHoffmann equations, EinsteinâÂÂRosen bridge),
- George F. R. Ellis (relativistic cosmological models, classification of curvature singularities, averaging problem in cosmology, gauge-invariant linear perturbations of spatially homogeneous cosmologies, "small universes," monograph, VirbhadraâÂÂEllis lens equation),
- Frederick J. Ernst (Ernst vacuum family, Ernst equation, solution generating methods, ErnstâÂÂWild electrovacuum),
- Loránd Eötvös (Eötvös experiment)
F
- Enrico Fermi (Fermi coordinates, FermiâÂÂWalker transport),
- Richard Feynman (sticky bead argument [as 'Mr. Smith'], supermassive stars, derivation of the Einstein field equations from quantum field theory, Feynman Lectures on Gravitation),
- David Finkelstein (EddingtonâÂÂFinkelstein coordinates),
- Vladimir Aleksandrovich Fock (textbook, harmonic coordinates),
- Robert L. Forward (gravitational-wave detectors),
- William A. Fowler (relativistic stellar models, gravitational collapse),
- Alexander Friedmann (Friedmann cosmological models)
G
H
- Yusuke Hagihara (Schwarzschild geodesics),
- Mustafa Halilsoy Nutku-Halil solution for colliding waves, On the NutkuâÂÂHalil solution for colliding impulsive gravitational waves
- James Hartle (quantum cosmology, textbook),
- Stephen Hawking (Hawking-Penrose singularity theorems, Hawking radiation, black-hole thermodynamics, monograph, Gibbons-Hawking-York boundary term),
- Charles W. Hellaby (cosmological models),
- David Hilbert (Hilbert's action principle),
- Banesh Hoffmann (EIH approximation),
- Fred Hoyle (steady-state cosmology),
- Russell Hulse (HulseâÂÂTaylor pulsar)
I
J
K
- Niky Kamran (wave equations in black hole space-times),
- Ronald Kantowski (Kantowski-Sachs fluids),
- Anders Karlhede (CartanâÂÂKarlhede classification),
- Edward Kasner (Kasner dust solution),
- Roy Patrick Kerr (Kerr vacuum, KerrâÂÂSchild metrics, use of Lie groups in relativity, KerrâÂÂFarnsworth ansatz),
- Isaak Markovich Khalatnikov (BKL conjecture),
- William Morris Kinnersley (photon rocket),
- Sergiu Klainerman (global stability of Minkowski vacuum),
- Oskar Klein (Klein fluid, KaluzaâÂÂKlein theories),
- Arthur Komar (Komar energyâÂÂmomentum integrals),
- Erich Kretschmann (Kretschmann invariant),
- Martin Kruskal (KruskalâÂÂSzekeres coordinates for Schwarzschild vacuum),
- Wolfgang Kundt (EK classification of symmetries of pp waves)
L
- Cornelius Lanczos (Lanczos tensor, LanczosâÂÂvan Stockum dust),
- Lev D. Landau (LandauâÂÂLifshitz formulation, textbook),
- Georges-Henri Lemaître (cosmological model, LTB dust, Lemaître chart on Schwarzschild vacuum),
- Josef Lense (LenseâÂÂThirring precession),
- Tullio Levi-Civita (static vacuums, C-metric; see also related list below),
- André Lichnerowicz (3+1 formalism, matching conditions, Lichnerowicz equation),
- Evgeny M. Lifshitz (LandauâÂÂLifschitz gravitational energyâÂÂmomentum complex, BKL conjecture, textbook),
- Alan P. Lightman (problem book),
- Casey Lilly (gravitational wave theory in general relativity)
- Hendrik Lorentz (Hamilton's principle, coordinate-free formulation),
- David Lovelock (Lovelock theory, Lovelock's theorem)
M
- Donald Marolf (black hole firewall paradox, shock singularity)
- R. G. McLenaghan (CM invariants),
- Reinhard Meinel (NeugebauerâÂÂMeinel dust disk solution),
- Hermann Minkowski (Minkowski spacetime),
- Charles W. Misner (mixmaster model, ADM initial value formulation, ADM mass, textbook)
- John Moffat (various classical gravitation theories)
- Vincent Moncrief (global properties of spatially compact dynamical vacuum spacetimes),
- C. Møller (energyâÂÂmomentum complex),
- Moustafa Mosharafa (relation of radiation, mass and energy)
<br />
N
- (NeugebauerâÂÂMeinel dust disk solution),
- Ezra Ted Newman (NewmanâÂÂPenrose formalism, KerrâÂÂNewman black hole solution, JanisâÂÂNewmanâÂÂWinicour solution, NUT vacuum, RT spacetimes, relation of lensing to Weyl tensor),
- Gunnar Nordström (ReissnerâÂÂNordström metric),
- Kenneth Nordtvedt (Nordtvedt effect, PPN formalism),
- Igor D. Novikov (Novikov chart in Schwarzschild vacuum, no-hair theorem, accretion disks around black holes, monograph)
- Yavuz Nutku Nutku-Halil solution for colliding waves, On the NutkuâÂÂHalil solution for colliding impulsive gravitational waves
O
P
- Achilles Papapetrou (chart for Ernst vacuum family, MajumdarâÂÂPapapetrou electrovacuums, DixonâÂÂPapapetrou equations),
- Paul Painlevé (GullstrandâÂÂPainlevé coordinates),
- Roger Penrose (HawkingâÂÂPenrose singularity theorems, Penrose diagrams, techniques from algebraic geometry and differential topology, Penrose limits, cosmic censorship hypotheses, Penrose inequalities, geometry of gravitational plane waves, impulsive waves, PenroseâÂÂKhan colliding plane wave, NewmanâÂÂPenrose formalism, Weyl curvature hypothesis, highly influential monograph),
- Alexei Zinovievich Petrov (Petrov classification of algebraic properties of Weyl curvature tensor),
- Tsvi Piran (gravitational collapse),
- Felix A. E. Pirani (gravitational radiation, PetrovâÂÂPirani classification of algebraic properties of Weyl curvature tensor),
- Jerzy F. PlebaÃ
Âski (Plebanski vacuum, Plebanski action),
- Eric Poisson (black hole interiors, mass inflation, post-Newtonian approximation, monographs),
- William H. Press (gravitational-wave astronomy, problem book),
- Frans Pretorius (numerical relativity simulation),
- Richard H. Price (Price's theorem, books)
R
- George Yuri Rainich (Rainich conditions),
- A. K. Raychaudhuri (Raychaudhuri equation),
- Tullio Regge (Regge calculus),
- Hans Reissner (ReissnerâÂÂNordström metric),
- Wolfgang Rindler (Rindler chart for Minkowski vacuum),
- (strong cosmic censorship holds for T3-Gowdy vacuums),
- Howard Percy Robertson (role of curvature, parametrized post-Newtonian formalism, RobertsonâÂÂWalker metric),
- Ivor Robinson (BelâÂÂRobinson tensor, BertottiâÂÂRobinson electrovacuum),
- Alfonso Romero (research on Lorentzian and semi-Riemannian geometry)
- Nathan Rosen (ErezâÂÂRosen solution, EinsteinâÂÂRosen bridge, EinsteinâÂÂRosen gravitational waves),
- Remo Ruffini (particle motion in black holes, textbook)
S
- Rainer K. Sachs (peeling theorem, optical scalars, KantowskiâÂÂSachs fluid solutions, SachsâÂÂWolfe effect, BondiâÂÂMetznerâÂÂSachs group),
- Andrei Dmitrievich Sakharov (vacuum fluctuations),
- Alfred Schild (KerrâÂÂSchild metrics, Schild's ladder),
- Leonard Isaac Schiff (PPN formalism, textbook),
- Richard Schoen (positive energy theorem, gravitational shielding),
- Engelbert Schücking (OzsváthâÂÂSchücking plane wave),
- Bernard F. Schutz (gravitational-wave detectors, textbook),
- Karl Schwarzschild (Schwarzschild solution, Schwarzschild radius, Event horizon, Schwarzschild vacuum, Schwarzschild fluid),
- Dennis William Sciama (EinsteinâÂÂCartan theory, role in legitimizing black hole concept),
- Roman Ulrich Sexl (AichelburgâÂÂSexl ultraboost),
- Irwin I. Shapiro (Shapiro effect, observational tests),
- Harlow Shapley (rotating cosmologies),
- Willem de Sitter (de Sitter space, de Sitter precession),
- Hartland Snyder (OppenheimerâÂÂSnyder model),
- Hans Stephani (Stephani dust solution, monograph, textbook),
- Willem Jacob van Stockum (LanczosâÂÂvan Stockum dust),
- John Lighton Synge (global structure of Schwarzschild vacuum, world function, O'BrienâÂÂSynge matching conditions),
- George Szekeres (KruskalâÂÂSzekeres coordinates for Schwarzschild vacuum)
T
- Abraham Haskel Taub (Taub plane symmetric vacuum, TaubâÂÂNUT vacuum, vacuum solutions foliated by Bianchi manifolds, relativistic hydrodynamics),
- Joseph Taylor (HulseâÂÂTaylor pulsar),
- Saul Teukolsky (Teukolsky's equations, numerical relativity, problem book),
- Hans Thirring (LenseâÂÂThirring precession),
- Kip Thorne (relativistic multipoles, relativistic stars, hoop conjecture, membrane paradigm, gravitational-wave detectors, textbook, wormholes, properties of black holes),
- Frank J. Tipler (classification of curvature singularities, Tipler cylinder),
- Richard Chase Tolman (Tolman surface brightness test, TolmanâÂÂOppenheimerâÂÂVolkoff (TOV) equation, Tolman dust solutions, LTB dust),
- Andrzej Trautman (RT spacetimes)
U
V
W
- Robert M. Wald (textbook, black-hole perturbations, black-hole thermodynamics, electric fields outside a black hole, quantum field theory in curved spacetimes),
- Arthur Geoffrey Walker (FermiâÂÂWalker derivatives, RobertsonâÂÂWalker metric),
- Mu-Tao Wang (quasilocal mass-energy),
- Joseph Weber (gravitational-wave detectors),
- Rainer Weiss (LIGO, gravitational-waves observation),
- Peter Westervelt (indirect evidence for gravitational waves),
- Hermann Weyl (Weyl vacuums; see also related list below),
- John Archibald Wheeler (coined the terms "black holes" and "wormholes," geometrodynamics, relativistic stars, ZerilliâÂÂWheeler equation, WheelerâÂÂDeWitt equation, textbook),
- Paul S. Wesson (relativistic cosmology, KaluzaâÂÂKlein theory)
- Clifford Martin Will (parametrized post-Newtonian expansions, relativistic astrophysics, textbook),
- Edward Witten (positive energy theorem),
- Louis Witten (Witten electrovacuum solutions)
X
Y
Z
Notes
See also