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Quantum Sensing Platform Development

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Federal

Contract Overview

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The contract focuses on the design and development of advanced quantum sensing instrumentation aimed at achieving ultra-high sensitivity measurements. Key applications include single-molecule detection and MRI-free deep-tissue imaging, highlighting the cutting-edge nature of the technology involved. The work is intended to push the boundaries of sensing capabilities to enable breakthroughs in both scientific research and medical diagnostics. This subcontract, titled "Quantum Sensing Platform Development," is issued by the National Science Foundation under its Directorate for Technology, Innovation, & Partnerships. The contract relates to NAICS code 541715, which covers research and development in physical, engineering, and life sciences. The place of performance is designated as Alexandria, with the solicitation posted on May 14, 2026, and the response deadline set for July 13, 2026. This opportunity represents a chance to contribute to a transformative technology platform in quantum sensing.

General Info

Develop advanced quantum sensing instruments for ultra-sensitive measurements in research and medical diagnostics.

Agency

National Science Foundation → Directorate For Technology, Innovation, & Partnerships

NAICS

541715 - Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology) View NAICS

Place of Performance

Alexandria, VA, USA

Set-Aside

NONE

Documents

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No documents available

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Timeline

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Organization & Contact Information

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AgencyNational Science Foundation → Directorate For Technology, Innovation, & Partnerships
ContactsNo contacts available
OfficeN/A
Organization / Agency
National Science Foundation → Directorate For Technology, Innovation, & Partnerships
Office AddressN/A
ContactsNo contact information available

Full Description

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Design and develop next-generation quantum sensing instrumentation for ultra-high sensitivity measurements such as single-molecule detection and MRI-free deep-tissue imaging.

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in almost 3 years

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