iDaVIE v1.0: A virtual reality tool for interactive analysis of astronomical data cubes

Fuente: arXiv
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Main Authors: Sivitilli, Alexander, Marchetti, Lucia, Comrie, Angus, Pretorius, P. Cilliers, Thijs, der Hulst, van, Vitello, Fabio, Pisano, D. J., Becciani, Ugo, Taylor, A. Russell, Serra, Paolo, Steyn, Mayhew, van Zyl, Michaela
Format: Preprint
Published: 2026
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author Sivitilli, Alexander
Marchetti, Lucia
Comrie, Angus
Pretorius, P. Cilliers
Thijs
der Hulst, van
Vitello, Fabio
Pisano, D. J.
Becciani, Ugo
Taylor, A. Russell
Serra, Paolo
Steyn, Mayhew
van Zyl, Michaela
author_facet Sivitilli, Alexander
Marchetti, Lucia
Comrie, Angus
Pretorius, P. Cilliers
Thijs
der Hulst, van
Vitello, Fabio
Pisano, D. J.
Becciani, Ugo
Taylor, A. Russell
Serra, Paolo
Steyn, Mayhew
van Zyl, Michaela
contents As modern astronomy confronts unprecedented data volumes, automated pipelines and machine-learning techniques have become essential for processing and analysis. As these workflows grow more complex, astronomers also require input and inspection tools that can keep pace. To address challenges in navigating multidimensional datasets for quality control and scientific interpretation, we present the immersive Data Visualisation Interactive Explorer (iDaVIE), a virtual reality (VR) software suite developed in collaboration with the astronomy community. iDaVIE enables users to import and render large 3D data cubes within a VR environment, offering real-time tools for selection, cropping, catalogue overlays, and exporting results back into existing pipelines. Built on the Unity engine and SteamVR, the system uses custom plug-ins for efficient data parsing, downsampling, and statistical calculations. The software has already been integrated into workflows such as verifying HI data cubes from MeerKAT, ASKAP, and APERTIF, refining detection masks, and identifying new sources. Its intuitive interface aims to reduce the cognitive load associated with higher-dimensional data, allowing researchers to focus more directly on scientific goals. As an open-source, scalable, and adaptable platform, iDaVIE supports continued development and integration with other tools. Version 1.0 marks a significant milestone, with planned enhancements including subcube loading, advanced rendering modes, video-generation scripts, and collaborative capabilities. By pairing immersive visualisation with robust interaction tools, iDaVIE seeks to transform how researchers engage with complex datasets and enhance productivity in the era of big data.
format Preprint
id arxiv_https___arxiv_org_abs_2603_15490
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle iDaVIE v1.0: A virtual reality tool for interactive analysis of astronomical data cubes
Sivitilli, Alexander
Marchetti, Lucia
Comrie, Angus
Pretorius, P. Cilliers
Thijs
der Hulst, van
Vitello, Fabio
Pisano, D. J.
Becciani, Ugo
Taylor, A. Russell
Serra, Paolo
Steyn, Mayhew
van Zyl, Michaela
Instrumentation and Methods for Astrophysics
Astrophysics of Galaxies
Human-Computer Interaction
As modern astronomy confronts unprecedented data volumes, automated pipelines and machine-learning techniques have become essential for processing and analysis. As these workflows grow more complex, astronomers also require input and inspection tools that can keep pace. To address challenges in navigating multidimensional datasets for quality control and scientific interpretation, we present the immersive Data Visualisation Interactive Explorer (iDaVIE), a virtual reality (VR) software suite developed in collaboration with the astronomy community. iDaVIE enables users to import and render large 3D data cubes within a VR environment, offering real-time tools for selection, cropping, catalogue overlays, and exporting results back into existing pipelines. Built on the Unity engine and SteamVR, the system uses custom plug-ins for efficient data parsing, downsampling, and statistical calculations. The software has already been integrated into workflows such as verifying HI data cubes from MeerKAT, ASKAP, and APERTIF, refining detection masks, and identifying new sources. Its intuitive interface aims to reduce the cognitive load associated with higher-dimensional data, allowing researchers to focus more directly on scientific goals. As an open-source, scalable, and adaptable platform, iDaVIE supports continued development and integration with other tools. Version 1.0 marks a significant milestone, with planned enhancements including subcube loading, advanced rendering modes, video-generation scripts, and collaborative capabilities. By pairing immersive visualisation with robust interaction tools, iDaVIE seeks to transform how researchers engage with complex datasets and enhance productivity in the era of big data.
title iDaVIE v1.0: A virtual reality tool for interactive analysis of astronomical data cubes
topic Instrumentation and Methods for Astrophysics
Astrophysics of Galaxies
Human-Computer Interaction
url https://arxiv.org/abs/2603.15490