1985 - Fellow of the Royal Society, United Kingdom
His main research concerns Particle physics, Supersymmetry, Nuclear physics, Higgs boson and Quark. His study focuses on the intersection of Particle physics and fields such as Observable with connections in the field of Electroweak interaction. His work carried out in the field of Supersymmetry brings together such families of science as Standard Model, Quantum field theory, Physics beyond the Standard Model, Boson and Elementary particle.
Jonathan Richard Ellis studied Boson and Radiative transfer that intersect with Higgs mechanism. His research in Higgs boson intersects with topics in Weak interaction, Bottom quark, Top quark, Gauge group and Gauge boson. The Quark study which covers Scattering that intersects with Neutrino.
Jonathan Richard Ellis spends much of his time researching Particle physics, Supersymmetry, Nuclear physics, Higgs boson and Quark. All of his Particle physics and Quantum chromodynamics, Large Hadron Collider, Gaugino, Gravitino and Standard Model investigations are sub-components of the entire Particle physics study. His study focuses on the intersection of Large Hadron Collider and fields such as Electroweak interaction with connections in the field of Cold dark matter.
His study in Supersymmetry is interdisciplinary in nature, drawing from both Physics beyond the Standard Model, Boson and Elementary particle. His Higgs boson study combines topics from a wide range of disciplines, such as Flipped SU, Grand Unified Theory and Gauge boson. In his research, Nucleon is intimately related to Baryon, which falls under the overarching field of Lepton.
Jonathan Richard Ellis mainly focuses on Particle physics, Supersymmetry, Higgs boson, Large Hadron Collider and Nuclear physics. His study in Particle physics concentrates on Electroweak interaction, Neutralino, Gaugino, Dark matter and Minimal Supersymmetric Standard Model. The concepts of his Supersymmetry study are interwoven with issues in Standard Model, Cosmic ray, Elementary particle and String.
His studies in Higgs boson integrate themes in fields like Phenomenology and Technicolor. Jonathan Richard Ellis has included themes like Physics beyond the Standard Model and Bunches in his Large Hadron Collider study. His work in the fields of Nuclear physics, such as Collider, Luminosity and Neutrino, overlaps with other areas such as Storage ring.
His primary areas of investigation include Particle physics, Large Hadron Collider, Supersymmetry, Higgs boson and Physics beyond the Standard Model. Jonathan Richard Ellis studies Dark matter which is a part of Particle physics. The various areas that he examines in his Large Hadron Collider study include Cold dark matter and Electroweak interaction.
His Supersymmetry research is mostly focused on the topic Superpartner. His research on Superpartner also deals with topics like
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Radiative corrections to the masses of supersymmetric Higgs bosons
Jonathan Richard Ellis;G Ridolfi;Fabio Zwirner.
Physics Letters B (1991)
Sum rule for deep-inelastic electroproduction from polarized protons
Jonathan Richard Ellis;Jonathan Richard Ellis;R L Jaffe;R L Jaffe.
Physical Review D (1974)
Aspects of the flipped unification of strong, weak and electromagnetic interactions
Andrzej J Buras;Jonathan Richard Ellis;Mary Katherin Gaillard;Dimitri Nanopoulos.
Nuclear Physics (1978)
On radiative corrections to supersymmetric Higgs boson masses and their implications for LEP searches
Jonathan Richard Ellis;G Ridolfi;Fabio Zwirner.
Physics Letters B (1991)
Probing the desert using gauge coupling unification
Jonathan Richard Ellis;S Kelley;Dimitri Nanopoulos;Dimitri Nanopoulos.
Physics Letters B (1991)
Chiral Symmetry and the Spin of the Proton
S J Brodsky;Jonathan Richard Ellis;Jonathan Richard Ellis;M M Karliner.
Physics Letters B (1988)
No-scale supersymmetric GUTs
Jonathan Richard Ellis;Costas Kounnas;Dimitri Nanopoulos.
Nuclear Physics (1984)
Supersymmetric flipped SU(5) revitalized
Ignatios Antoniadis;Jonathan Richard Ellis;John S Hagelin;Dimitri Nanopoulos.
Physics Letters B (1987)
The flipped SU(5)×U(1) string model revamped
Ignatios Antoniadis;Jonathan Richard Ellis;John S Hagelin;Dimitri Nanopoulos.
Physics Letters B (1989)
Neutral currents within beyond the standard model
G. Costa;J. Ellis;G.L. Fogli;D.V. Nanopoulos.
Nuclear Physics (1988)
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