Author:
Alexopoulos Charalampos,Saxena Stuti
Abstract
Purpose
This paper aims to further the understanding of Open Government Data (OGD) adoption by the government by invoking two quantum physics theories – percolation theory and expander graph theory.
Design/methodology/approach
Extant research on the barriers to adoption and rollout of OGD is reviewed to drive home the research question for the present study. Both the theories are summarized, and lessons are derived therefrom for answering the research question.
Findings
The percolation theory solves the riddle of why the OGD initiatives find it difficult to seep across the hierarchical and geographical levels of any administrative division. The expander graph theory builds the understanding of the need for having networking among and within the key government personnel for bolstering the motivation and capacity building of the operational personnel linked with the OGD initiative. The theoretical understanding also aids in the implementation and institutionalization of OGD in general.
Originality/value
Intersectionality of domains for conducting research on any theme is always a need. Given the fact that there are innumerable challenges regarding the adoption of OGD by the governments across the world, the application of the two theories of quantum physics might solve the quandary in a befitting way.
Reference69 articles.
1. Liberation of public data: exploring central themes in open government data and freedom of information research;International Journal of Information Management,2017
2. A systematic review of open government data initiatives;Government Information Quarterly,2015
3. Recent developments in continuum percolation;Philosophical Magazine B,1987
4. The self-dual point of the two-dimensional random-cluster model is critical for q ≧ 1;Probability Theory and Related Fields,2012
5. Percolation theory and its application to groundwater hydrology;Water Resources Research,1993