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Dive into the research topics where Iryna Kashperka is active.

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Featured researches published by Iryna Kashperka.


The Astrophysical Journal | 2010

Dissociative Recombination of Protonated Formic Acid : Implications for Molecular Cloud and Cometary Chemistry

Erik Vigren; M. Hamberg; Vitali Zhaunerchyk; M. Kaminska; J. Semaniak; Mats Larsson; Richard D. Thomas; M. af Ugglas; Iryna Kashperka; T. J. Millar; Catherine Walsh; H. Roberts; Wolf D. Geppert

At the heavy ion storage ring CRYRING in Stockholm, Sweden, we have investigated the dissociative recombination of DCOOD2+ at low relative kinetic energies, from similar to 1 meV to 1 eV. The therm ...


The Astrophysical Journal | 2012

Dissociative Recombination of Vibrationally Cold CH+ 3 and Interstellar Implications

Richard D. Thomas; Iryna Kashperka; Erik Vigren; Wolf D. Geppert; M. Hamberg; Mats Larsson; M. af Ugglas; V. Zhaunerchyk; Nick Indriolo; K. Yagi; S. Hirata; Benjamin J. McCall

CH3+ is an important molecular ion in the astrochemistry of diffuse clouds, dense clouds, cometary comae, and planetary ionospheres. However, the rate of one of the major destruction mechanisms of ...


The Astrophysical Journal | 2010

DISSOCIATIVE RECOMBINATION OF PROTONATED PROPIONITRILE, CH3CH2CNH + : IMPLICATIONS FOR TITAN'S UPPER ATMOSPHERE

Erik Vigren; M. Hamberg; Vitali Zhaunerchyk; M. Kaminska; Richard D. Thomas; Sebastian Trippel; M. Zhang; Iryna Kashperka; M. af Ugglas; J. Semaniak; Mats Larsson; Wolf D. Geppert

The dissociative recombination of protonated propionitrile, CH3CH2CNH+, has been investigated at the heavy ion storage ring, CRYRING, at the Manne Siegbahn Laboratory, Stockholm University, Sweden. ...


Journal of Physical Chemistry A | 2013

Dissociative Recombination of CH4

Richard D. Thomas; Iryna Kashperka; Erik Vigren; Wolf D. Geppert; M. Hamberg; Mats Larsson; Magnus af Ugglas; Vitali Zhaunerchyk

CH4(+) is an important molecular ion in the astrochemistry of diffuse clouds, dense clouds, cometary comae, and planetary ionospheres. However, the rate of one of the common destruction mechanisms for molecular ions in these regions, dissociative recombination (DR), is somewhat uncertain. Here, we present absolute measurements for the DR of CH4(+) made using the heavy ion storage ring CRYRING in Stockholm, Sweden. From our collision-energy dependent cross-sections, we infer a thermal rate constant of k(Te) = 1.71(±0.02) × 10(–6)(Te/300)(−0.66(±0.02)) cm3 s(–1) over the region of electron temperatures 10 ≤ Te ≤ 1000 K. At low collision energies, we have measured the branching fractions of the DR products to be CH4 (0.00 ± 0.00); CH3 + H (0.18 ± 0.03); CH2 + 2H (0.51 ± 0.03); CH2 + H2 (0.06 ± 0.01); CH + H2 + H (0.23 ± 0.01); and CH + 2H2 (0.02 ± 0.01), indicating that two or more C–H bonds are broken in 80% of all collisions.


Physical Chemistry Chemical Physics | 2010

Dissociative recombination of the acetaldehyde cation, CH3CHO+

Erik Vigren; M. Hamberg; Vitali Zhaunerchyk; M. Kaminska; Richard D. Thomas; Sebastian Trippel; M. Zhang; Iryna Kashperka; Magnus af Ugglas; Catherine Walsh; J. Semaniak; Mats Larsson; Wolf D. Geppert

The dissociative recombination of the acetaldehyde cation, CH(3)CHO(+), has been investigated at the heavy ion storage ring CRYRING at the Manne Siegbahn Laboratory in Stockholm, Sweden. The dependence of the absolute cross section of the reaction on the relative kinetic energy has been determined and a thermal rate coefficient of k(T) = (1.5 ± 0.2) × 10(-6) (T/300)(-0.70±0.02) cm(3) s(-1) has been deduced, which is valid for electron temperatures between ∼10 and 1000 K. The branching fractions of the reaction were studied at ∼0 eV relative kinetic energy and we found that breaking one of the bonds between two of the heavy atoms occurs in 72 ± 2% of the reactions. In the remaining events the three heavy atoms stay in the same product fragment. While the branching fractions are fairly similar to the results from an earlier investigation into the dissociative recombination of the fully deuterated acetaldehyde cation, CD(3)CDO(+), the thermal rate coefficient is somewhat larger for CH(3)CHO(+). Astrochemical implications of the results are discussed.


Journal of Chemical Physics | 2009

Investigation into the vibrational yield of OH products in the OH+H+H channel arising from the dissociative recombination of H3O+

V. Zhaunerchyk; Wolf D. Geppert; S. Rosén; Erik Vigren; M. Hamberg; M. Kaminska; Iryna Kashperka; Magnus af Ugglas; J. Semaniak; Mats Larsson; Richard D. Thomas

The vibrational population of the hydroxyl radical, OH, formed in the OH+H+H channel arising from the dissociative recombination of the hydronium ion, H(3)O(+), has been investigated at the storage ring CRYRING using a position-sensitive imaging detector. Analysis shows that the OH fragments are predominantly produced in the v=0 and v=1 states with almost equal probabilities. This observation is in disagreement with earlier FALP experiments, which reported OH(v=0) as the dominant product. Possible explanations for this difference are discussed.


Physical Review Letters | 2009

Precision lifetime measurements of He(-) in a cryogenic electrostatic ion-beam trap.

Peter Reinhed; Andrea Orbán; Josefina Werner; S. Rosén; Richard D. Thomas; Iryna Kashperka; Henrik Johansson; D. Misra; Lars Brännholm; Mikael Björkhage; H. Cederquist; H. T. Schmidt


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2010

Cryogenic keV ion-beam storage in ConeTrap—A tool for ion-temperature control

Peter Reinhed; Andrea Orbán; S. Rosén; Richard D. Thomas; Iryna Kashperka; H. Johansson; Deepankar Misra; A. Fardi; Lars Brännholm; Mikael Björkhage; H. Cederquist; H. T. Schmidt


Journal of Physical Chemistry A | 2014

Experimental Studies of (HCO+)-C-13 Recombining with Electrons at Energies between 2-50 000 meV

M. Hamberg; Iryna Kashperka; Richard D. Thomas; E. Roueff; Vitali Zhaunerchyk; Mathias Danielsson; Magnus af Ugglas; Fabian Österdahl; Erik Vigren; M. Kaminska; A. Källberg; Ansgar Simonsson; A. Paal; M. Gerin; Mats Larsson; Wolf D. Geppert


Astronomy and Astrophysics | 2010

Experimental studies of the dissociative recombination of CD3CDOD + and CH3CH2OH2 +

M. Hamberg; Vitali Zhaunerchyk; Erik Vigren; M. Kaminska; Iryna Kashperka; M. Zhang; Sebastian Trippel; Fabian Österdahl; M. af Ugglas; Richard D. Thomas; A. Källberg; Ansgar Simonsson; A. Paal; J. Semaniak; Mats Larsson; Wolf D. Geppert

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Richard D. Thomas

University of Illinois at Urbana–Champaign

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J. Semaniak

Jan Kochanowski University

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