The new collinear resonant ionization spectroscopy (Cris) experiment at Isolde, Cern uses laser radiation to stepwise excite and ionize an atomic beam for the purpose of ultra-sensitive detection of rare isotopes and hyperfine structure measurements. The technique also offers the ability to purify an ion beam that is contaminated with radioactive isobars, including the ground state of an isotope from its isomer. A new program using the Cris technique to select only nuclear isomeric states for decay spectroscopy commenced last year. The isomeric ion beam is selected using a resonance within its hyperfine structure and subsequently deflected to a decay spectroscopy station. This consists of a rotating wheel implantation system for alpha and b...
High-resolution laser spectroscopy was performed on 206Fr with the collinear resonance ionization sp...
International audienceThis paper presents an overview of recent resonance ionization schemes used at...
International audienceHigh-resolution laser spectroscopy was performed on Fr206 with the collinear r...
A new collinear resonant ionization spectroscopy (Cris)beam line has recently been installed at Isol...
Abstract. The Collinear Resonance Ionization Spectroscopy (CRIS) experiment at ISOLDE, CERN, uses la...
Radioactive decay studies of rare isotopes produced at radioactive ion beam facilities have often be...
AbstractThe CRIS setup at CERN-ISOLDE is a laser spectroscopy experiment dedicated to the high-resol...
The CRIS setup at CERN-ISOLDE is a laser spectroscopy experiment dedicated to the high-resolution st...
The Collinear Resonance Ionisation Spectroscopy (CRIS) experiment at CERN has achieved high-resoluti...
A new decay-spectroscopy station (DSS) has been developed to be coupled to the collinear resonance i...
The ability to study rare isotopes with techniques such as mass spectrometry and laser spectroscopy ...
AbstractA new decay-spectroscopy station (DSS2.0) has been designed by the CRIS collaboration for us...
A new decay-spectroscopy station (DSS2.0) has been designed by the CRIS collaboration for use at the...
The Collinear Resonance Ionization Spectroscopy (CRIS) experiment, located at the ISOLDE facility, h...
High-resolution laser spectroscopy was performed on 206Fr with the collinear resonance ionization sp...
International audienceThis paper presents an overview of recent resonance ionization schemes used at...
International audienceHigh-resolution laser spectroscopy was performed on Fr206 with the collinear r...
A new collinear resonant ionization spectroscopy (Cris)beam line has recently been installed at Isol...
Abstract. The Collinear Resonance Ionization Spectroscopy (CRIS) experiment at ISOLDE, CERN, uses la...
Radioactive decay studies of rare isotopes produced at radioactive ion beam facilities have often be...
AbstractThe CRIS setup at CERN-ISOLDE is a laser spectroscopy experiment dedicated to the high-resol...
The CRIS setup at CERN-ISOLDE is a laser spectroscopy experiment dedicated to the high-resolution st...
The Collinear Resonance Ionisation Spectroscopy (CRIS) experiment at CERN has achieved high-resoluti...
A new decay-spectroscopy station (DSS) has been developed to be coupled to the collinear resonance i...
The ability to study rare isotopes with techniques such as mass spectrometry and laser spectroscopy ...
AbstractA new decay-spectroscopy station (DSS2.0) has been designed by the CRIS collaboration for us...
A new decay-spectroscopy station (DSS2.0) has been designed by the CRIS collaboration for use at the...
The Collinear Resonance Ionization Spectroscopy (CRIS) experiment, located at the ISOLDE facility, h...
High-resolution laser spectroscopy was performed on 206Fr with the collinear resonance ionization sp...
International audienceThis paper presents an overview of recent resonance ionization schemes used at...
International audienceHigh-resolution laser spectroscopy was performed on Fr206 with the collinear r...