A gated-time-of-flight top-hat electrostatic analyzer for low energy ion measurements

Author:

Gershman Daniel J.1ORCID,Avanov Levon A.12ORCID,Collinson Glyn13ORCID,Tucker Corey J.14,Barrie Alexander15ORCID,Chornay Dennis J.12ORCID,Paschalidis Nikolaos P.1ORCID,Rowland Douglas1ORCID,Moore Thomas E.1

Affiliation:

1. NASA Goddard Space Flight Center 1 , Greenbelt, Maryland 20771, USA

2. Department of Astronomy, University of Maryland 2 , College Park, Maryland 20742, USA

3. Department of Physics, Catholic University of America 3 , Washington, District of Columbia 20064, USA

4. Science Systems and Applications Inc. 4 , Greenbelt, Maryland 20771, USA

5. Aurora Engineering 5 , Greenbelt, Maryland 20771, USA

Abstract

When incorporated into a top-hat electrostatic analyzer, a gate electrode enables the separation of ions by their mass-per-charge with modest mass resolution (M/∆M ∼ 10). Gated-time-of-flight (TOF) instruments avoid the energy straggling and angular scattering effects prevalent in foil-based detection systems, providing more pristine measurements of three-dimensional distribution functions of incident ions. Gated-TOF implementations are ideal for measuring the properties of low-energy (i.e., <100 eV) thermal ions in various space environments. We present an instrument prototype capable of separating H+, He+, O+, and O2+ in Earth’s ionosphere and demonstrate that in addition to providing species determination, precise operation of the gate electrode provides an electronically adjustable geometric factor that can extend a single instrument’s dynamic range by several orders of magnitude.

Funder

Goddard Space Flight Center

NASA Headquarters

Publisher

AIP Publishing

Subject

Instrumentation

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