The use of various low-energy electron spectroscopies is becoming increasingly common in surface research and analysis. An experimental problem encountered frequently in such measurements is to control the sample temperature without accumulating noise due to magnetic fields, in the case of resistive heating, or due to background electron current in the case of heating by electron bombardment. Either scheme for heating the sample will render the measurements unsatisfactory. In this work, we describe a temperature-controlling scheme in which temperature control and data acquisition take place in alternating time periods
Electronic techniques can now be applied to the solution of almost any problem of temperature measur...
No. DE-AC02-78ET51013. Reproduction, translation, publication, use and disposal, in whole or in part...
Temperature control of an electrical furnace is generally accomplished by means of a servo mechanism...
Spot profile analysis low energy electron diffraction (SPA-LEED) is one of the most versatile and po...
An electronic sample-and-hold circuit to minimize artifacts during high-temperature Auger electron s...
Scanning electron microscopy (SEM) is ubiquitous for imaging but is not generally regarded as a tool...
Thermoluminescence dating has attracted the attention of geology and archaeology researchers as a ne...
Mapping temperature with nanoscale spatial resolution is important for thermal transport studies and...
electron microscopy, x-ray or neutron diffraction, electri-cal resistivity, magnetic susceptibility,...
we present the design and implementation of a versatile cryogenic temperature controller based on a ...
We seek to measure time-resolved electron temperatures in the SSPX plasma using soft X-rays from fre...
This review presents an overview of the thermal properties of mesoscopic structures. The discussion ...
The thermoluminescence dating is attracted the attention of geology or archaeology researchers as a ...
The cooling of a surface when thermionic electrons are emitted has been measured by Richardson and o...
High energy electron irradiation of solids goes together with a local heating of the interactions ar...
Electronic techniques can now be applied to the solution of almost any problem of temperature measur...
No. DE-AC02-78ET51013. Reproduction, translation, publication, use and disposal, in whole or in part...
Temperature control of an electrical furnace is generally accomplished by means of a servo mechanism...
Spot profile analysis low energy electron diffraction (SPA-LEED) is one of the most versatile and po...
An electronic sample-and-hold circuit to minimize artifacts during high-temperature Auger electron s...
Scanning electron microscopy (SEM) is ubiquitous for imaging but is not generally regarded as a tool...
Thermoluminescence dating has attracted the attention of geology and archaeology researchers as a ne...
Mapping temperature with nanoscale spatial resolution is important for thermal transport studies and...
electron microscopy, x-ray or neutron diffraction, electri-cal resistivity, magnetic susceptibility,...
we present the design and implementation of a versatile cryogenic temperature controller based on a ...
We seek to measure time-resolved electron temperatures in the SSPX plasma using soft X-rays from fre...
This review presents an overview of the thermal properties of mesoscopic structures. The discussion ...
The thermoluminescence dating is attracted the attention of geology or archaeology researchers as a ...
The cooling of a surface when thermionic electrons are emitted has been measured by Richardson and o...
High energy electron irradiation of solids goes together with a local heating of the interactions ar...
Electronic techniques can now be applied to the solution of almost any problem of temperature measur...
No. DE-AC02-78ET51013. Reproduction, translation, publication, use and disposal, in whole or in part...
Temperature control of an electrical furnace is generally accomplished by means of a servo mechanism...