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Department of Energy

Available for Licensing: High-Quality Actinide Thin Films via Molecular Beam Epitaxy for Quantum and Optoelectronic Devices

Solicitation: BA-1441
Notice ID: 5dfe71f0c28f43b7ad5def3bcb61738e
TypeSpecial NoticeNAICS 334413PSCAJ12DepartmentDepartment of EnergyStateIDPostedApr 13, 2026, 12:00 AM UTCDueMay 15, 2026, 06:00 AM UTCExpiredBid range$625,611 - $741,464
Contract snapshot

Special Notice from ENERGY, DEPARTMENT OF • ENERGY, DEPARTMENT OF. Place of performance: ID. Response deadline: May 15, 2026. Industry: NAICS 334413 • PSC AJ12.

Source
Open on SAM.gov →
Solicitation
BA-1441
Performance
Idaho Falls, Idaho • 83401 United States
Response
May 15, 2026, 06:00 AM UTC
Open on SAM.gov →
Map for ID
Live POP
Place of performance
Idaho Falls, Idaho • 83401 United States
State: ID
Contracting office
Idaho Falls, ID • 83415 USA

Point of Contact

Name
Javier Martinez
Email
javier.martinez@inl.gov
Phone
Not available

Agency & Office

Department
ENERGY, DEPARTMENT OF
Agency
ENERGY, DEPARTMENT OF
Subagency
BATTELLE ENERGY ALLIANCE–DOE CNTR
Office
Not available
Contracting Office Address
Idaho Falls, ID
83415 USA

Applicable wage determinations

Best public WD match for the notice location and scope.

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Best fitDavis-Baconstate match
ID20260060 (Rev 1)
Published May 18, 2026Idaho • Shoshone
24 occupation rates available in the full WD.
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ID20260060 (Rev 1)
Open WD
Published May 18, 2026Idaho • Shoshone
Rate
CARPENTER (FORM WORK ONLY)
Base $38.87Fringe $17.84
Rate
ELECTRICIAN
Base $49.55Fringe $19.09
Rate
OVER SCALE
Base $30.41Fringe $15.95
+21 more occupation rates in this WD
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ID20260023 (Rev 2)
Open WD
Published May 18, 2026Idaho • Clark, Custer
Rate
BRICKLAYER
Base $30.00Fringe $17.78
Rate
ZONE RATE SHALL APPLY ZONES SHALL BE MEASURED FROM THE THE FOLLOWING U.S. POST OFFICES: BOISE: 304 N. 8TH STREET TWIN FALLS: 253 2ND AVE. WEST POCATELLO: CLARK STREET IDAHO FALLS: 875 NORTH CAPITAL AVE
Base $35.68Fringe $18.24
Rate
ELECTRICIAN (INCLUDING LOW VOLTAGE WIRING)
Base $40.00Fringe $18.74
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ID20260048 (Rev 1)
Open WD
Published May 18, 2026Idaho • Elmore
Rate
ELECTRICIAN
Base $42.25Fringe $18.84
Rate
OVER SCALE
Base $37.58Fringe $16.10
Rate
OVER SCALE
Base $37.35Fringe $16.10
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ID20260034 (Rev 2)
Open WD
Published May 18, 2026Idaho • Power
Rate
BRICKLAYER
Base $26.79Fringe $17.34
Rate
ELECTRICIAN (INCLUDING LOW VOLTAGE WIRING)
Base $40.00Fringe $18.74
Rate
ER DAY. CRANE LONG BOOM PAY: A. CRANE BOOMS, 100FT TO 150FT, FIFTEEN CENTS OVER SCALE B. CRANE BOOMS, 150 FT TO 200 FT, THIRTY CENTS OVER SCALE C. CRANE BOOMS, OVER 200 FT., FORTY-FIVE CENTS OVER SCALE
Base $37.35Fringe $16.10
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More in NAICS 334413

Description

High-Quality Actinide Thin Films via Molecular Beam Epitaxy for Quantum and Optoelectronic Devices 

Description 

Researchers at INL have developed a process to deposit high-quality epitaxial crystalline thin films of uranium and thorium, as well as their nitrides, using molecular beam epitaxy (MBE). MBE is a non-equilibrium vacuum deposition technique that provides precise control over the composition and interfaces of the material, making it ideal for fabricating high-purity, defect-free, single-crystalline thin films. 

Actinide thin films, particularly those of uranium and thorium, present significant challenges for ab initio modeling due to their complex electron correlations. High-quality samples are essential for providing feedback to develop accurate models. Additionally, the strong electron correlations in actinide materials make them promising candidates for next-generation computing technologies. 

By tuning the growth parameters, including temperature, pressure, growth rate, and flux ratios, researchers can controllably form high-quality actinide thin films. This technique also allows for seamless integration with existing semiconductor technology, facilitating the development of advanced device structures. 

Key Benefits 

  • High-Quality Thin Films: MBE enables the fabrication of high-purity, defect-free, single-crystalline thin films of uranium and thorium, as well as their nitrides. 

  • Precise Control: The technique provides precise control over growth parameters, ensuring the formation of high-quality materials suitable for advanced applications. 

  • Integration with Existing Technology: the ability to fabricate epitaxial films at wafer scale will facilitate seamless integration with existing semiconductor technology, making it suitable for the development of advanced electronic and computing devices. 

  • Advanced Modeling Support: High-quality actinide thin films provide essential feedback for developing accurate ab initio models, facilitating further research and development. 

Market Applications 

  • Quantum Computing: The unique properties of actinide materials can be harnessed to explore new computational paradigms. The precise control and high-quality deposition of actinide thin films make them ideal candidates for developing next-generation quantum computing devices.  

  • Advanced Research: The technology can be utilized by researchers focused on studying the complex electron correlations in actinide materials. High-quality samples are essential for advancing theoretical and experimental research in this field. 

  • Optoelectronics: The ability to fabricate high-quality crystalline thin films of actinides and their nitrides with strong electron correlations and spin orbit coupling can be leveraged to develop advanced electronic devices. 

  • Semiconductor Industry: Epitaxial films are more easily integrated with existing semiconductor technology than more disordered crystals, which can open up new possibilities for creating advanced device structures, potentially leading to innovations in various high-tech applications. 

Advantage 

Molecular beam epitaxy (MBE) offers several advantages over other deposition techniques, such as DC sputtering, which has been previously used to form monocrystalline actinide-nitride thin films. MBE is regarded as the pinnacle of vacuum deposition techniques due to its ability to create atomically precise layers and use high-purity sources. While MBE has been used to deposit all-metal alloys, it has not been previously employed for actinide-nitrides. This novel application of MBE differentiates the technology from existing methods and provides a unique advantage in producing high-quality actinide thin films with tunable properties. 

Advisory bid range

Pricing and bid posture

high confidence
$625,611 - $741,464

Contractor-side estimate from visible notice metadata, NAICS/PSC, contract type, schedule hints, and BidPulsar workpaper assumptions. Not an IGCE, incumbent price, award value, or government budget.

Calibrate full bid price →
Floor
$625,611
Target
$662,022
Premium
$741,464
Labor
$329,680
Direct
$32,000
Burden
$221,360
Fee + reserve
$78,022
Target $662,022Hybrid workpaper with explicit assumptions4 modeled rows

This advisory bid range is visible page text for contractors and search engines: it summarizes the modeled floor, target, and premium bid posture for this solicitation.

Market snapshot

Awarded-market signal for NAICS 334413 (last 12 months), benchmarked to sector 33.

12-month awarded value
$17,900,087
Sector total $53,340,602,409 • Share 0.0%
Live
Median
$350,000
P10–P90
$350,000$350,000
Volatility
Stable0%
Market composition
NAICS share of sector
A simple concentration signal, not a forecast.
0.0%
share
Momentum (last 3 vs prior 3 buckets)
+66%($4,422,146)
Deal sizing
$350,000 median
Use as a pricing centerline.
Live signal is computed from awarded notices already observed in the system.
Signals shown are descriptive of observed awards; not a forecast.

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