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Wavelength Modulation Spectrometer for Studying the Optical Properties of Solids

Kerry L. Shaklee, J. E. Rowe

Open publisher page 52 citations

Abstract

It has previously been recognized that wavelength derivative spectroscopy greatly enhances optical structure as compared to conventional absorption or reflectance methods. However, a practical wavelength derivative spectrometer must have a procedure to remove from the spectra the wavelength derivative of I(0), the incident light intensity. A sensitive double beam wavelength modulation spectrometer is described which removes the dI(0)/dlambda spectrum to a high degree of accuracy. The removal of the dI(0)/dlambda spectrum is continuously optimized by means of a servo loop controlling the gain of the reference channel. The primary advantage of this spectrometer is that it does not require closely matched components in order to achieve double beam accuracy.

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What this paper is about

It has previously been recognized that wavelength derivative spectroscopy greatly enhances optical structure as compared to conventional absorption or reflectance methods. However, a practical wavelength derivative spectrometer must have a procedure to remove from the spectra the wavelength derivative of I(0), the incident light intensity. A sensitive double beam wavelength modulation spectrometer is described which removes the dI(0)/dlambda spectrum to a high degree of accuracy. The removal of the dI(0)/dlambda spectrum is continuously optimized by means of a servo loop controlling the gain of the reference channel. The primary advantage of this spectrometer is that it does not require closely matched components in order to achieve double beam accuracy.

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OpenAlex reports 52 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

It has previously been recognized that wavelength derivative spectroscopy greatly enhances optical structure as compared to conventional absorption or reflectance methods. However, a practical wavelength derivative spectrometer must have a procedure to remove from the spectra the wavelength derivative of I(0), the incident light intensity. A sensitive double beam wavelength modulation spectrometer is described which removes the dI(0)/dlambda spectrum to a high degree of accuracy. The removal of the dI(0)/dlambda spectrum is continuously optimized by means of a servo loop controlling the gain of the reference channel. The primary advantage of this spectrometer is that it does not require closely matched components in order to achieve double beam accuracy.

Key concepts: Spectrometer, Optics, Wavelength, Modulation (music), Materials science, Light beam, Light intensity, Beam (structure)

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