Xi-cam: a versatile interface for data visualization and analysis

Author:

Pandolfi Ronald J.ORCID,Allan Daniel B.,Arenholz Elke,Barroso-Luque Luis,Campbell Stuart I.,Caswell Thomas A.,Blair Austin,De Carlo Francesco,Fackler Sean,Fournier Amanda P.,Freychet Guillaume,Fukuto Masafumi,Gürsoy Dogˇa,Jiang Zhang,Krishnan Harinarayan,Kumar Dinesh,Kline R. Joseph,Li Ruipeng,Liman Christopher,Marchesini Stefano,Mehta Apurva,N'Diaye Alpha T.,Parkinson Dilworth Y.,Parks Holden,Pellouchoud Lenson A.,Perciano Talita,Ren Fang,Sahoo Shreya,Strzalka Joseph,Sunday Daniel,Tassone Christopher J.,Ushizima Daniela,Venkatakrishnan Singanallur,Yager Kevin G.,Zwart Peter,Sethian James A.,Hexemer AlexanderORCID

Abstract

Xi-cam is an extensible platform for data management, analysis and visualization. Xi-cam aims to provide a flexible and extensible approach to synchrotron data treatment as a solution to rising demands for high-volume/high-throughput processing pipelines. The core of Xi-cam is an extensible plugin-based graphical user interface platform which provides users with an interactive interface to processing algorithms. Plugins are available for SAXS/WAXS/GISAXS/GIWAXS, tomography and NEXAFS data. With Xi-cam's `advanced' mode, data processing steps are designed as a graph-based workflow, which can be executed live, locally or remotely. Remote execution utilizes high-performance computing or de-localized resources, allowing for the effective reduction of high-throughput data. Xi-cam's plugin-based architecture targets cross-facility and cross-technique collaborative development, in support of multi-modal analysis. Xi-cam is open-source and cross-platform, and available for download on GitHub.

Funder

Lawrence Berkeley National Laboratory

US Department of Energy

Center for Advanced Mathematics in Energy Research Applications

Publisher

International Union of Crystallography (IUCr)

Subject

Instrumentation,Nuclear and High Energy Physics,Radiation

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