Quantum Characterization, Calibration, and Control (QC3)

Location: Federal
Posted: May 1, 2025
Due: Aug 7, 2025
Agency: DEPT OF DEFENSE
Type of Government: Federal
Category:
  • A - Research and development
Solicitation No: W911NF25S0002
Publication URL: To access bid details, please log in.
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Quantum Characterization, Calibration, and Control (QC3)
Active
Contract Opportunity
Notice ID
W911NF25S0002
Related Notice
Department/Ind. Agency
DEPT OF DEFENSE
Sub-tier
DEPT OF THE ARMY
Major Command
AMC
Sub Command
ACC
Sub Command 2
ACC-CTRS
Sub Command 3
ACC-APG
Office
W6QK ACC-APG DURHAM
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General Information
  • Contract Opportunity Type: Solicitation (Original)
  • Original Published Date: May 01, 2025 03:02 pm EDT
  • Original Date Offers Due: Aug 07, 2025 04:00 pm EDT
  • Inactive Policy: 15 days after date offers due
  • Original Inactive Date: Aug 22, 2025
  • Initiative:
    • None
Classification
  • Original Set Aside:
  • Product Service Code: AJ11 - GENERAL SCIENCE AND TECHNOLOGY R&D SERVICES; GENERAL SCIENCE AND TECHNOLOGY; BASIC RESEARCH
  • NAICS Code:
    • 541715 - Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)
  • Place of Performance:
Description

DEVCOM Army Research Laboratory–Army Research Office (ARL-ARO) in partnership with the Laboratory for Physical Sciences (LPS) is soliciting proposals for research in Quantum Characterization, Calibration, and Control (QC3). This is a proposed four-year program and is primarily focused on three topic areas in the field of quantum computing (QC).

The topic areas are as follows:

(1) Characterization:

• Primary Research Goal: Advance the state-of-the-art to quantitatively assess the performance of qubit operations in multi-qubit circuits and to extract error-models.

(2) Calibration:

• Primary Research Goal: Advance state-of-the-art for bring up of multi-qubit circuits for high-performance operations near or better than fault-tolerance thresholds.

(3) Control:

• Primary Research Goal: Advance state-of-the-art control techniques to operate multi-qubit circuits operating near or better than fault-tolerant thresholds, accounting for the specifics of error-models for the circuit.

For this BAA, by error-models is meant the quantitative (Topic 1) description of the total, the types, and distribution of errors encountered by qubit operations in multi-qubit circuits.

Research proposals to these topics are sought that address the circuit gate-based model of quantum computation overhead and inefficiencies, as well as improve the accuracy and stability of characterization, calibration, and control schemes, in a manner relevant for qubit arrays in the 10s-100s of qubits scale for early fault-tolerant quantum computing (FTQC) applications.


Attachments/Links
Contact Information
Contracting Office Address
  • RTP DIVISION 800 PARK OFFICE DRIVE SUITE 4229
  • RESEARCH TRIANGLE PAR , NC 27709-2211
  • USA
Primary Point of Contact
Secondary Point of Contact


History
  • May 01, 2025 03:02 pm EDTSolicitation (Original)

Related Document

Jul 7, 2025[Solicitation (Updated)] Quantum Characterization, Calibration, and Control (QC3)
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