We have proposed an advanced technique to measure the 93mNb yield precisely by Resonance Ionization Mass Spectrometry, instead of conventional characteristic X-ray spectroscopy. 93mNb-selective resonance ionization is achievable by distinguishing the hyperfine splitting of the atomic energy levels between 93Nb and 93mNb at high resolution. In advance of 93mNb detection, we could successfully demonstrate high resolution resonant ionization spectroscopy of stable 93Nb using an all solid-state, narrow-band and tunable Ti:Sapphire laser system operated at 1 kHz repetition rate
With the phasing out of many research reactors over the upcoming years, a shortcoming of small and m...
We present two approaches to enhance the resolving power for measuring hyperfine structure constants...
Increasing needs in the semiconductor industry as well as research on environmental pollution and cl...
We have proposed an advanced technique to measure the 93mNb yield precisely by Resonance Ionization ...
Several two- and three-step schemes for resonance ionization of 93Nb with field ionization of Rydber...
Resonance ionization mass spectrometry (RIMS), a promising technique mainly devoted (although not li...
Resonance ionization mass spectrometry is a versatile technique for highly selective ionization and ...
Development of resonance ionization spectroscopy (RIS) has made the concept of single-atom counting,...
This article presents a pulsed narrowband injection-locked Titanium:Sapphire laser aimed for high-re...
Two approaches to RIMS will be discussed here. The first is the use of continuous-wave (cw) dye lase...
The applications of the laser resonance ionization method in nuclear research are reviewed. Investig...
Resonant laser ionization and spectroscopy are widely used techniques at radioactive ion beam facili...
Resonance ionization mass spectrometry (RIMS) is a relatively new laser-based technique for the dete...
The mass spectrometric analysis of Os and Re was investigated by use of a pulsed primary Ar^+ ion b...
A neutron source for neutron resonance spectroscopy (NRS) has been developed using high intensity, s...
With the phasing out of many research reactors over the upcoming years, a shortcoming of small and m...
We present two approaches to enhance the resolving power for measuring hyperfine structure constants...
Increasing needs in the semiconductor industry as well as research on environmental pollution and cl...
We have proposed an advanced technique to measure the 93mNb yield precisely by Resonance Ionization ...
Several two- and three-step schemes for resonance ionization of 93Nb with field ionization of Rydber...
Resonance ionization mass spectrometry (RIMS), a promising technique mainly devoted (although not li...
Resonance ionization mass spectrometry is a versatile technique for highly selective ionization and ...
Development of resonance ionization spectroscopy (RIS) has made the concept of single-atom counting,...
This article presents a pulsed narrowband injection-locked Titanium:Sapphire laser aimed for high-re...
Two approaches to RIMS will be discussed here. The first is the use of continuous-wave (cw) dye lase...
The applications of the laser resonance ionization method in nuclear research are reviewed. Investig...
Resonant laser ionization and spectroscopy are widely used techniques at radioactive ion beam facili...
Resonance ionization mass spectrometry (RIMS) is a relatively new laser-based technique for the dete...
The mass spectrometric analysis of Os and Re was investigated by use of a pulsed primary Ar^+ ion b...
A neutron source for neutron resonance spectroscopy (NRS) has been developed using high intensity, s...
With the phasing out of many research reactors over the upcoming years, a shortcoming of small and m...
We present two approaches to enhance the resolving power for measuring hyperfine structure constants...
Increasing needs in the semiconductor industry as well as research on environmental pollution and cl...