ARPES-Lab

ARPES-Lab

ARPES-Lab

Product catalog summary
Introduction to ARPES: Angular Resolved Photoemission Spectroscopy (ARPES) is a critical technique for understanding the electronic structure of materials, revealing band structures and Fermi levels essential for studying electron transport and band-gap phenomena. Scienta Omicron provides advanced ARPES solutions with automated systems and expert support.
State-of-the-Art ARPES Technology: The ARPES Lab by Scienta Omicron offers high precision and speed in band structure mapping, utilizing magnetically shielded chambers and cryogenic sample manipulators. The integration of advanced automation and software control enhances measurement reliability and accessibility.
Key Components and Features: The ARPES Lab features the DA30-L hemispherical analyzer with in-lens deflector technology, allowing for improved accuracy and reduced measurement times. The system supports multiple light sources, including the VUV5k high-intensity monochromatic light source and laser sources for time-resolved experiments.
Technical Specifications: The ARPES Lab includes a comprehensive vacuum system, precise sample manipulators, and advanced magnetic shielding. It supports a wide range of energy and angular resolutions, with customizable options to meet specific research needs.
Applications and Customization: The ARPES Lab is designed for integration with materials innovation platforms, reducing contamination risks during thin film deposition and surface analysis. It offers customizable configurations to suit individual research requirements.
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Catalog excerpts

ARPES-Lab-1

The Expert Solution for Angle Resolved Photoemission Spectroscopy Comprehensive ARPES solution by the market leader Expert integration of the best technologies Smart system and measurement automation Expert support for configuration and design Fast help by world-wide service teams

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ARPES-Lab-2

Angular resolved photoemission spectroscopy (ARPES) has emerged as the most powerful technique to understand the electronic structure of materials and what can influence their physics and chemistry. Revealing the band-structure of the valence band and the Fermi-level is fundamental to understanding electron transport, band-gap phenomena and spin-related effects. The progress of new technologies and the development of emergent materials rely more than ever on the ARPES technique to provide a precise understanding of the inherent properties of complex material systems. This powerful method is now...

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ARPES-Lab-3

Example for a customized ARPES Lab. Comprehensive solution from a single supplier DA30-L deflector technology for precise ARPES results High photon density VUV sources with small beam spots He I and He II monochromators for minimal photon bandwidth Ease of use by interplay of system and measurement software User-friendly adjustment of light-source and manipulator Expert support for configuration and design World-wide local Sales and Service-Support ARPES Manipulator • LHe cooling < 5 K • Open cycle or closed cyle • Fully motorized • Anti-crash security system The ARPES Lab can support multiple...

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ARPES-Lab-4

Stainless steel chamber with mu-metal liner, DA30-L analyzer, VUV5k VUV source, XPS source, LHe 5-axes manipulator open cycle ** A wide range of options allow for tailoring the system to the specific needs of individual research. For example: Property Energy resolution, analyzer* Energy range Angular resolution, analyzer* Angular resolved range Deflector mode for full cone detection Magnetic shielding, chamber Base pressure, analysis chamber Pressure during operation Fast He pumping (tandem turbo pump) VUV photon flux density VUV beam spot size VUV energy-resolution XPS excitation energy Manipulator...

 Open the catalog to page 4

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*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.