Our Story

In December 2023, atop the breathtaking Rocky Mountains, two graduate students from Bangladesh studying in the USA found themselves reflecting on a long-standing dream. Surrounded by the serene beauty of nature, we solidified our shared vision—the Institute for Theoretical and Computational Physics Research (ITCPR).

Our passion for physics and our desire to make research opportunities more accessible have been guiding lights throughout our academic journeys. Over the years, we dreamed of a platform where budding physicists could collaborate, learn, and contribute to pushing the boundaries of knowledge.

That day in the Rockies, we decided it was time to turn this dream into a reality. ITCPR was born not just as an institute but as a testament to the power of dreams, collaboration, and the enduring spirit of curiosity.

ITCPR Founding Moment

Our Vision

ITCPR aspires to establish itself as a leading institution in theoretical and computational physics, driving innovation and advancing the frontiers of scientific research. Our vision encompasses the creation of an inclusive global research community that transcends geographical and socioeconomic barriers.

We are committed to providing comprehensive resources and opportunities to emerging physicists from underrepresented regions, enabling them to make significant contributions to the scientific community. Through strategic partnerships, mentorship programs, and a dedication to academic excellence, we aim to advance the field of physics while cultivating the next generation of scientific leaders.

Our Objectives

Establishing a Global Research Network

  • Developing an international network of physicists, with particular focus on regions with limited research infrastructure.
  • Facilitating cross-cultural collaboration and knowledge exchange within the scientific community.

Advancing Theoretical and Computational Physics

  • Conducting innovative research in fundamental areas of theoretical and computational physics.
  • Implementing novel methodologies and analytical frameworks in physics research.

Enhancing Professional Development

  • Delivering comprehensive training programs and educational resources in theoretical and computational physics.
  • Providing virtual workshops, seminars, and lectures to facilitate continuous professional development.

Technical and Research Competency Development

  • Implementing training programs in essential technical skills, including programming, data analysis, and scientific computing.
  • Strengthening research methodology and analytical capabilities for academic and professional advancement.

Scientific Communication and Public Engagement

  • Establishing digital platforms for disseminating research findings and scientific insights.
  • Implementing outreach initiatives to enhance public understanding of physics and scientific research.