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Dive into the research topics where Bettina Gamper is active.

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Featured researches published by Bettina Gamper.


Journal of Physics B | 2011

Investigation of the hyperfine structure of Pr I and Pr II lines based on highly resolved Fourier transform spectra

Bettina Gamper; Z. Uddin; M. Jahangir; Olivier Allard; H. Knöckel; E. Tiemann; Laurentius Windholz

We report the recording of new highly resolved Fourier transform spectra of the neutral praseodymium atom. With the help of the new spectra we found about 9000 new lines from which—in the region 3260 to 9880 A—1194 could be classified as transitions between energy levels of the Pr atom and 19 as transitions of the Pr ion. Twenty-three new atomic energy levels of odd parity and one of even parity were discovered during this first examination. The spectra might be very helpful for further laser spectroscopic investigations of the hyperfine structure of Pr I and Pr II transitions.


Journal of Physics B | 2013

Optogalvanic spectroscopy of the hyperfine structure of weak La I lines: discovery of new even parity fine structure levels

Imran Siddiqui; Shamim Khan; Bettina Gamper; J. Dembczyński; Laurentius Windholz

The hyperfine structure of weak La I lines was experimentally investigated using laser optogalvanic spectroscopy in a hollow cathode discharge lamp. More than 100 La I lines were investigated and 40 new energy levels were discovered, most of them having even parity. The magnetic hyperfine interaction constants A and in some cases the electric quadrupole interaction constants B for these levels were determined. All the newly discovered levels were confirmed either by additional laser excitations (from other known levels) or by lines in a Fourier transform spectrum which could now be classified.


Journal of Physics B | 2014

New even-parity fine structure levels of the Lanthanum atom discovered by means of optogalvanic spectroscopy

Bettina Gamper; P Głowacki; Imran Siddiqui; J Dembczyński; Laurentius Windholz

Laser excitation of an Ar–La plasma, generated in a hollow cathode discharge lamp, has allowed to us observe a huge number of spectral lines that could not be interpreted as transitions between already known La energy levels. From the observed hyperfine structure patterns and fluorescence lines, we derived 37 new La levels, all with even parity, in the energy range between 38 000 cm−1 and 43 000 cm−1. The existence of these levels was then proved by excitations from other known lower levels.


Advances in Optical Technologies | 2012

Laser Spectroscopic Investigations of Praseodymium I Transitions: New Energy Levels

Zaheer Uddin; Driss El Bakkali; Bettina Gamper; S. Khan; Imran Siddiqui; Günter H. Guthöhrlein; Laurentius Windholz

We report the discovery of about 140 new energy levels of the neutral praseodymium atom, found by means of laser-induced fluorescence spectroscopy. Their energy has been determined with an uncertainty of 0.010 cm−1 using a wave number calibrated Fourier-transform spectrum.


Journal of Quantitative Spectroscopy & Radiative Transfer | 2017

New even and odd parity fine structure levels of La I discovered by means of laser-induced fluorescence spectroscopy

Gü. Başar; Bettina Gamper; F. Güzelçimen; I. K. Öztürk; Tobias Binder; Gö. Başar; S. Kröger; Laurentius Windholz


European Physical Journal-special Topics | 2013

Modelling of emission spectra of Pr I by summarizing hyperfine patterns of overlapping spectral lines

Bettina Gamper; S. Khan; Imran Siddiqui; Laurentius Windholz


Spectral Analysis Review | 2014

The Puzzle of the La I Lines 6520.644 Å and 6519.869 Å

Laurentius Windholz; Bettina Gamper; Przemysław Głowacki; Jerzy Dembczyński


Frühjahrstagung des Arbeitskreises Atome, Moleküle, Quantenoptik und Plasmen (AMOP) der DPG | 2014

New even and odd energy levels of the La atom

Bettina Gamper; Tobias Binder; F. Güzelçimen; Gö. Basar; S. Kröger; Laurentius Windholz


Frühjahrstagung der Deutschen Physikalischen Gesellschaft | 2014

Systematic laser-spectroscopic investigations of the La spectrum

Tobias Binder; Bettina Gamper; J. Dembczyński; Laurentius Windholz


Frühjahrstagung der Deutschen Physikalischen Gesellschaft | 2013

Hyperfine structure investigations by Modelling Emission Spectra

Bettina Gamper; Laurentius Windholz

Collaboration


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Laurentius Windholz

Graz University of Technology

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S. Khan

Islamia College University

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J. Dembczyński

Poznań University of Technology

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Tobias Binder

Graz University of Technology

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S. Kröger

HTW Berlin - University of Applied Sciences

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Shamim Khan

Graz University of Technology

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