Search for efficient laser resonance ionization schemes of tantalum using a newly developed time-of-flight mass-spectrometer in KISS

The technique of laser resonance ionization is employed for an element-selective ionization of multi-nucleon transfer reaction products which are stopped and neutralized in a gas cell filled with argon gas at 50kPa. We have been searching for efficient laser ionization schemes for refractory element...

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Published inNuclear instruments & methods in physics research. Section B, Beam interactions with materials and atoms Vol. 376; pp. 73 - 76
Main Authors Mukai, M., Hirayama, Y., Ishiyama, H., Jung, H.S., Miyatake, H., Oyaizu, M., Watanabe, Y.X., Kimura, S., Ozawa, A., Jeong, S.C., Sonoda, T.
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Published Elsevier B.V 01.06.2016
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Abstract The technique of laser resonance ionization is employed for an element-selective ionization of multi-nucleon transfer reaction products which are stopped and neutralized in a gas cell filled with argon gas at 50kPa. We have been searching for efficient laser ionization schemes for refractory elements of Z=73–78 using a time-of-flight mass-spectrometer (TOF-MS) chamber. To evaluate the isotope shift and ionization efficiency for each candidate of the ionization scheme, isotope separation using the TOF-MS was devised. The TOF-MS was designed to separate the isotopes using two-stage linear acceleration with a mass resolving power M/ΔM of >350. A mass resolving power of 250 was experimentally confirmed by measuring the TOF of laser-ionized tantalum (Z=73) ions with mass number 181. We searched for a laser resonance ionization scheme of tantalum using the TOF-MS.
AbstractList The technique of laser resonance ionization is employed for an element-selective ionization of multi-nucleon transfer reaction products which are stopped and neutralized in a gas cell filled with argon gas at 50kPa. We have been searching for efficient laser ionization schemes for refractory elements of Z =73-78 using a time-of-flight mass-spectrometer (TOF-MS) chamber. To evaluate the isotope shift and ionization efficiency for each candidate of the ionization scheme, isotope separation using the TOF-MS was devised. The TOF-MS was designed to separate the isotopes using two-stage linear acceleration with a mass resolving power of >350. A mass resolving power of 250 was experimentally confirmed by measuring the TOF of laser-ionized tantalum (Z =73) ions with mass number 181. We searched for a laser resonance ionization scheme of tantalum using the TOF-MS.
The technique of laser resonance ionization is employed for an element-selective ionization of multi-nucleon transfer reaction products which are stopped and neutralized in a gas cell filled with argon gas at 50kPa. We have been searching for efficient laser ionization schemes for refractory elements of Z=73–78 using a time-of-flight mass-spectrometer (TOF-MS) chamber. To evaluate the isotope shift and ionization efficiency for each candidate of the ionization scheme, isotope separation using the TOF-MS was devised. The TOF-MS was designed to separate the isotopes using two-stage linear acceleration with a mass resolving power M/ΔM of >350. A mass resolving power of 250 was experimentally confirmed by measuring the TOF of laser-ionized tantalum (Z=73) ions with mass number 181. We searched for a laser resonance ionization scheme of tantalum using the TOF-MS.
Author Ishiyama, H.
Jeong, S.C.
Oyaizu, M.
Kimura, S.
Jung, H.S.
Ozawa, A.
Sonoda, T.
Hirayama, Y.
Miyatake, H.
Mukai, M.
Watanabe, Y.X.
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CitedBy_id crossref_primary_10_1103_PhysRevC_96_014307
crossref_primary_10_1016_j_nimb_2017_08_037
crossref_primary_10_1063_1_5124444
crossref_primary_10_1016_j_nimb_2016_03_031
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10.1063/1.1715212
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Mass-spectrometer
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Snippet The technique of laser resonance ionization is employed for an element-selective ionization of multi-nucleon transfer reaction products which are stopped and...
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SubjectTerms Chambers
Ionization
Isotope separation
Isotopes
Laser resonance ionization
Lasers
Mass-spectrometer
Resolution
Searching
Tantalum
Title Search for efficient laser resonance ionization schemes of tantalum using a newly developed time-of-flight mass-spectrometer in KISS
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