Published April 2014 | Version v1
Journal article

Stripline split-ring resonator with integrated optogalvanic sample cell

  • 1. Department of Physics and Astronomy, Ion Physics, Uppsala University, Uppsala, SE-751 20 (Sweden)
  • 2. Department of Engineering Sciences, Ångström Space Technology Centre, Uppsala University, Uppsala, SE-751 21 (Sweden)

Description

Intracavity optogalvanic spectroscopy (ICOGS) has been proposed as a method for unambiguous detection of rare isotopes. Of particular interest is 14C, where detection of extremely low concentrations in the 1:1015 range (14C: 12C), is of interest in, e.g., radiocarbon dating and pharmaceutical sciences. However, recent reports show that ICOGS suffers from substantial problems with reproducibility. To qualify ICOGS as an analytical method, more stable and reliable plasma generation and signal detection are needed. In our proposed setup, critical parameters have been improved. We have utilized a stripline split-ring resonator microwave-induced microplasma source to excite and sustain the plasma. Such a microplasma source offers several advantages over conventional ICOGS plasma sources. For example, the stripline split-ring resonator concept employs separated plasma generation and signal detection, which enables sensitive detection at stable plasma conditions. The concept also permits in situ observation of the discharge conditions, which was found to improve reproducibility. Unique to the stripline split-ring resonator microplasma source in this study, is that the optogalvanic sample cell has been embedded in the device itself. This integration enables improved temperature control and more stable and accurate signal detection. Significant improvements are demonstrated, including reproducibility, signal-to-noise ratio, and precision. (letter)

Availability note (English)

Available from http://dx.doi.org/10.1088/1612-2011/11/4/045701

Additional details

Publishing Information

Journal Title
Laser physics letters (Internet)
Journal Volume
11
Journal Issue
4
Journal Page Range
[7 p.]
ISSN
1612-202X