In this paper, proton decay in a large nucleus is studied in the framework of SU(5) grand unification theory (GUT). By using a method based upon the Green s-function technique of many-body physics, nuclear effects on spectator and pole terms are computed. The decay width in the nucleus is found to be practically the same as in free space. However, nuclear effects are of considerable importance concerning the positron spectrum. A densitycorrelation expansion is introduced which is useful for carrying out a systematic study of nuclear effects in proton decay in a large nucleus. The method presented here can be easily extended to other GUT's or supersymmetric GUT's
While the observation of nucleon decay would be a smoking gun of Grand Unified Theories (GUTs) in ge...
The instability of protons is a crucial prediction of supersymmetric GUTs. We review the decay in mi...
The short-range and tensor components of the bare nucleon-nucleon interaction induce a sizeable depl...
In this paper, a previously published method to deal with proton decay in nuclear rnatter is general...
A previous work about inclusive proton decay in a nucleus is critically analyzed. Explicit new calcu...
In this paper we consider the baryon-number-violating nucleon decays (involving positron emission) i...
The kinematics of the decay of a bound proton is governed by the proton spectral function. We evalua...
An experimental observation of proton decay would be a spectacu-lar proof of Grand Unification. Curr...
The theory for proton radioactivity from deformed drip-line nuclei is discussed. All experimental da...
The process of proton emission from nuclei is studied by utilizing the two-potential approach of Gur...
We analyze nucleon decay modes in a no-scale supersymmetric flipped SU(5) GUT model, and contrast th...
This dissertation deals with the effects of nuclear structure on the α-decay properties, and on the ...
In this article we review proton decay in the supersymmetric grand unified models
Existing Grand Unified Theories predict a free proton lifetime which would be experimentally accessi...
We review some applications of self-consistent Green's function theory to studies of one- and two-nu...
While the observation of nucleon decay would be a smoking gun of Grand Unified Theories (GUTs) in ge...
The instability of protons is a crucial prediction of supersymmetric GUTs. We review the decay in mi...
The short-range and tensor components of the bare nucleon-nucleon interaction induce a sizeable depl...
In this paper, a previously published method to deal with proton decay in nuclear rnatter is general...
A previous work about inclusive proton decay in a nucleus is critically analyzed. Explicit new calcu...
In this paper we consider the baryon-number-violating nucleon decays (involving positron emission) i...
The kinematics of the decay of a bound proton is governed by the proton spectral function. We evalua...
An experimental observation of proton decay would be a spectacu-lar proof of Grand Unification. Curr...
The theory for proton radioactivity from deformed drip-line nuclei is discussed. All experimental da...
The process of proton emission from nuclei is studied by utilizing the two-potential approach of Gur...
We analyze nucleon decay modes in a no-scale supersymmetric flipped SU(5) GUT model, and contrast th...
This dissertation deals with the effects of nuclear structure on the α-decay properties, and on the ...
In this article we review proton decay in the supersymmetric grand unified models
Existing Grand Unified Theories predict a free proton lifetime which would be experimentally accessi...
We review some applications of self-consistent Green's function theory to studies of one- and two-nu...
While the observation of nucleon decay would be a smoking gun of Grand Unified Theories (GUTs) in ge...
The instability of protons is a crucial prediction of supersymmetric GUTs. We review the decay in mi...
The short-range and tensor components of the bare nucleon-nucleon interaction induce a sizeable depl...