A wavelength‐scan and intensity‐control system for a widely‐used, high‐intensity monochromator is described. The wavelength scan is bidirectional and variable speed, and may be controlled manually or by TTL logic from a computer. The intensity control is effected by use of a programmable dc power supply and D–A converter. Various filters are described which allow an intensity of up to 2×1014 photons/cm2 s to be achieved in a 1 cm×3 cm area over a wavelength range 0.76–2.50 μm, at 0.07 μm bandwidth, with a single grating. (A lesser intensity is available to 3.4 μm.) This wide range is made possible by the use of second‐order light from 0.76–1.00 μm. Photoconductivity data in GaAs:Cr and InP:Fe are presented, as an example
$^{1}$ A. Savitsky and R. S. Halford, Rev. Sci. Instr. 21, 203 (1950)Author Institution: Crystal Bra...
Author Institution: Flint College of the University of MichiganEvery operator of single-beam spectro...
The principle of a multilayer monochromator with a narrow bandwidth and a low specular background is...
A wavelength‐scan and intensity‐control system for a widely‐used, high‐intensity monochromator is de...
In the investigation of phenomena involving both optical intensity and wavelength, an instrument is ...
The design and development of an inexpensive and versa tile optical spectrum analysis system is desc...
Author Institution: The Perkin-Elmer CorporationA rapid scan monochromator scans wavelength from 4 t...
An electronic apparatus which can be used to vary several experimental parameters automatically is d...
This research was supported by University of Kansas General Research Allocations 3095-XO-0038 and b3...
Describes a computer-controlled system capable of measuring a wide range of semiconductor resistivit...
To augment the monitoring capabilities of a Balzers 760 coating chamber, we replaced the simple, sin...
The recent availability of ultrafast coherent sources in the extreme ultraviolet (XUV) and soft X-ra...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/73690/1/j.1751-1097.1970.tb05997.x.pd
The goal of this research was to design and develop a computer-controlled source of coherent, narrow...
The authors have designed a double crystal, fixed exit monochromator which allows windowless operati...
$^{1}$ A. Savitsky and R. S. Halford, Rev. Sci. Instr. 21, 203 (1950)Author Institution: Crystal Bra...
Author Institution: Flint College of the University of MichiganEvery operator of single-beam spectro...
The principle of a multilayer monochromator with a narrow bandwidth and a low specular background is...
A wavelength‐scan and intensity‐control system for a widely‐used, high‐intensity monochromator is de...
In the investigation of phenomena involving both optical intensity and wavelength, an instrument is ...
The design and development of an inexpensive and versa tile optical spectrum analysis system is desc...
Author Institution: The Perkin-Elmer CorporationA rapid scan monochromator scans wavelength from 4 t...
An electronic apparatus which can be used to vary several experimental parameters automatically is d...
This research was supported by University of Kansas General Research Allocations 3095-XO-0038 and b3...
Describes a computer-controlled system capable of measuring a wide range of semiconductor resistivit...
To augment the monitoring capabilities of a Balzers 760 coating chamber, we replaced the simple, sin...
The recent availability of ultrafast coherent sources in the extreme ultraviolet (XUV) and soft X-ra...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/73690/1/j.1751-1097.1970.tb05997.x.pd
The goal of this research was to design and develop a computer-controlled source of coherent, narrow...
The authors have designed a double crystal, fixed exit monochromator which allows windowless operati...
$^{1}$ A. Savitsky and R. S. Halford, Rev. Sci. Instr. 21, 203 (1950)Author Institution: Crystal Bra...
Author Institution: Flint College of the University of MichiganEvery operator of single-beam spectro...
The principle of a multilayer monochromator with a narrow bandwidth and a low specular background is...