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Collision Cross Sections of Hydrogen and Other Ions as Determined by Ion Cyclotron Resonance

Darold C. Wobschall, Robert A. Fluegge, John R. Graham

Open publisher page 32 citations

Abstract

Through determinations of the widths of ion cyclotron resonance lines as a function of pressure and electric field strengths, the ion—molecule collision cross sections of H+, H2+, H3+, He+, Ar+, N2+, N+, O2+, O2−, and O− were obtained. Agreement with dc mobility data was found. In particular, the minimum in collision frequency for H3+ in H2 at E/P0=60 V/cm·torr was confirmed. The cross sections for H2+ in H2 are 275 and 68 Å2 at low and high E/P, respectively.

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Through determinations of the widths of ion cyclotron resonance lines as a function of pressure and electric field strengths, the ion—molecule collision cross sections of H+, H2+, H3+, He+, Ar+, N2+, N+, O2+, O2−, and O− were obtained. Agreement with dc mobility data was found. In particular, the minimum in collision frequency for H3+ in H2 at E/P0=60 V/cm·torr was confirmed. The cross sections for H2+ in H2 are 275 and 68 Å2 at low and high E/P, respectively.

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Available abstract

Through determinations of the widths of ion cyclotron resonance lines as a function of pressure and electric field strengths, the ion—molecule collision cross sections of H+, H2+, H3+, He+, Ar+, N2+, N+, O2+, O2−, and O− were obtained. Agreement with dc mobility data was found. In particular, the minimum in collision frequency for H3+ in H2 at E/P0=60 V/cm·torr was confirmed. The cross sections for H2+ in H2 are 275 and 68 Å2 at low and high E/P, respectively.

Key concepts: Ion, Atomic physics, Ion cyclotron resonance, Cyclotron, Cyclotron resonance, Fourier transform ion cyclotron resonance, Torr, Collision

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