We discuss the proton decay problem in theories with low gravity and/or GUT scales. We pointed out that the gravity induced proton decay can be indeed suppressed up to a desired level, while the GUT origin of the proton instability is rather problematic. To solve this problem we suggest the GUT model where the proton is stabile in all orders of perturbation theory. This can be simply achieved by the replication of quark-lepton families with ordinary quarks and leptons residing in different GUT representations and by an appropriate dimensional reduction. The model predicts extra mirror states which along with the GUT particles and the excitations of extra dimensions could be observable at high-energy colliders providing the unification scale...
In this article we review proton decay in the supersymmetric grand unified models
We present a Grand Unified Theory (GUT) that has GUT fields with masses of the order of a TeV, but a...
Proton decay is a smoking gun signature of grand unified theories (GUTs). Searches by Super-Kamiokan...
A unified model is constructed, based on flipped SU(5) in which the proton is absolutely stable. The...
We study proton decay in a six-dimensional orbifold GUT model with gauge group $SO(10)×U(1)$$_A$. Ma...
A unified model is constructed, based on flipped SU(5) in which the proton is absolutely stable. The...
Proton decay is a smoking gun signature of grand unified theories (GUTs). Searches by Super-Kamiokan...
Proton decay is a smoking gun signature of grand unified theories (GUTs). Searches by Super-Kamiokan...
We calculate the proton lifetime in an SO(10) supersymmetric grand unified theory [SUSY GUT] with U(...
The instability of protons is a crucial prediction of supersymmetric GUTs. We review the decay in mi...
The instability of protons is a crucial prediction of supersymmetric GUTs. We review the decay in mi...
The instability of protons is a crucial prediction of supersymmetric GUTs. We review the decay in mi...
Grand Unified Theories (GUTs) are one of the most interesting high-energy completions of the Standar...
We study the proton lifetime in the SO(10) Grand Unified Theory (GUT), which has the left–right (LR)...
Grand Unified Theories (GUTs) are one of the most interesting high-energy completions of the Standar...
In this article we review proton decay in the supersymmetric grand unified models
We present a Grand Unified Theory (GUT) that has GUT fields with masses of the order of a TeV, but a...
Proton decay is a smoking gun signature of grand unified theories (GUTs). Searches by Super-Kamiokan...
A unified model is constructed, based on flipped SU(5) in which the proton is absolutely stable. The...
We study proton decay in a six-dimensional orbifold GUT model with gauge group $SO(10)×U(1)$$_A$. Ma...
A unified model is constructed, based on flipped SU(5) in which the proton is absolutely stable. The...
Proton decay is a smoking gun signature of grand unified theories (GUTs). Searches by Super-Kamiokan...
Proton decay is a smoking gun signature of grand unified theories (GUTs). Searches by Super-Kamiokan...
We calculate the proton lifetime in an SO(10) supersymmetric grand unified theory [SUSY GUT] with U(...
The instability of protons is a crucial prediction of supersymmetric GUTs. We review the decay in mi...
The instability of protons is a crucial prediction of supersymmetric GUTs. We review the decay in mi...
The instability of protons is a crucial prediction of supersymmetric GUTs. We review the decay in mi...
Grand Unified Theories (GUTs) are one of the most interesting high-energy completions of the Standar...
We study the proton lifetime in the SO(10) Grand Unified Theory (GUT), which has the left–right (LR)...
Grand Unified Theories (GUTs) are one of the most interesting high-energy completions of the Standar...
In this article we review proton decay in the supersymmetric grand unified models
We present a Grand Unified Theory (GUT) that has GUT fields with masses of the order of a TeV, but a...
Proton decay is a smoking gun signature of grand unified theories (GUTs). Searches by Super-Kamiokan...