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Patent

Molecular gas analysis by Raman scattering in intracavity laser configuration

TLDR
In this article, the concentration of multiple polyatomic gases are determined almost simultaneously by Raman scattering, where the gas sample is placed in a sampling cell located in the resonance cavity of a laser and a polarized laser beam having sufficient intensity to produce detectable signals of Raman scattered light is passed through the cell by means of a reflection mirror located parallel to the axis of the laser beam adjacent to and outside the cell.
Abstract
The concentration of multiple polyatomic gases are determined almost simultaneously by Raman scattering The gas sample is placed in a sampling cell located in the resonance cavity of a laser and a polarized laser beam having sufficient intensity to produce detectable signals of Raman scattered light is passed through the cell The scattered light is captured and redirected by means of a reflection mirror located parallel to the axis of the laser beam adjacent to and outside of the cell Signals of both inelastic Raman scattered light and elastic laser scattered light are collected by a collection lens means opposite the reflection mirror and outside the gas cell The collection lens is also parallel to the axis of the laser beam The collected scattered signals are directed onto a laser line rejection filter where the scattered elastic laser signals are filtered out and the inelastic Raman scattered signals are transmitted to come in contact with a rotating filter wheel containing a series of interference filters with each filter being specific to the transmission of one Raman line The Raman lines passing through the rotating filters are sensed sequentially by a single detector means and amplified and converted into digital electrical pulses which are processed and converted into visual readouts indicative of the concentration of each of the polyatomic molecules in the gas being determined

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Citations
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TL;DR: In this paper, a body fluid sampling system for use on a tissue site includes a single drive force generator and a plurality of penetrating members are operatively coupled to the force generator.
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TL;DR: In this paper, a lancet driver can be configured to follow a predetermined tissue lancing profile to maintain the patency of the wound tract once the lance has cut into the skin.
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TL;DR: In this article, a body fluid sampling system is provided for use on a tissue site, which comprises a cartridge, a penetrating member driver, a plurality of penetrating members arranged in a radial configuration on the cartridge wherein sharpened distal tips of the penetrating members point radially outward.
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TL;DR: A tissue penetration device and method of using same that may include a lancet module or sampling module is discussed in this paper, where the sampling module may optionally be in a cartridge configuration and include sampling and analyzing functions, which may be integrated.
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Methods and apparatus for lancet actuation

TL;DR: In this article, a lancet driver is provided wherein the driver exerts a driving force on a lance during a lancing cycle and is used on a tissue site.
References
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Book

Laser Spectroscopy: Basic Concepts and Instrumentation

TL;DR: In this paper, the authors present a survey of the latest developments in laser spectroscopy, focusing on the following: Absorption and emission of light, Widths and profiles of Spectral Lines, Spectroscopic Instrumentation, and Spectroscopy of Collision Processes.
Book ChapterDOI

Raman Scattering Cross Sections in Gases and Liquids

TL;DR: In this article, the photographic technique of recording high-resolution Raman spectra of gases allows the precise measurement of wavenumber shifts and the accurate determination of molecular constants derived therefrom.
Patent

Photo-optical method for determining fat content in meat

TL;DR: In this paper, an interference filter is chosen for its sensitivity in the absorption band of fat in order to read out the fat content of the sample, and a detector receives light transmitted through the filter and generates an electrical signal that is processed.
Patent

Remote quantitative analysis of materials

TL;DR: In this paper, the Raman scattered radiation from the material is filtered to selectively attenuate reflected radiation from a source and transmitted to a detector system which integrates the detected radiation over an interval spaced in time from a laser pulse whereby the spacing represents range to the gas and the integral represents the concentration of a particular species in the gas.
Patent

S light cell for increasing the intensity level of raman light emission from a sample

TL;DR: In this article, the use of mirrors and a source of sample exciting light arranged in such relation to a sample zone that source light is caused to pass many times through a sample in that zone for increasing substantially the intensity level of Raman light emission from the sample.