| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 1836381 | Nuclear Physics A | 2015 | 14 Pages | 
Abstract
												We introduce the differential and the total decay widths of a resonant (Gamow) state decaying into a continuum of stable states. When the resonance has several decay modes, we introduce the corresponding partial decay widths and branching fractions. In the approximation that the resonance is sharp, the expressions for the differential, partial and total decay widths of a resonant state bear a close resemblance with the Golden Rule. In such approximation, the branching fractions of a resonant state are the same as the standard branching fractions obtained by way of the Golden Rule. We also introduce dimensionless decay constants along with their associated differential decay constants, and we express experimentally measurable quantities such as the branching fractions and the energy distributions of decay events in terms of those dimensionless decay constants.
											Related Topics
												
													Physical Sciences and Engineering
													Physics and Astronomy
													Nuclear and High Energy Physics
												
											Authors
												Rafael de la Madrid, 
											