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Calcium Cold-Atomic Beam Source Federal contract opportunity
Solicitation number
N0018921QZ211
Issued by
Department of the Navy

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JUSTIFICATION FOR SOLE SOURCE (<SAT)

The service or material listed on N6228521RC065AE is sole source and competition is precluded for reasons indicated below. There are no substitutes available for this material or service.

Restricted to the following source. Provide original manufacturer’s name.

Manufacturer: AOSense, Inc.

Manufacturer POC & phone nr. Dr. Karin Fisher 1 (408) 636-2608 Mfr. address __415 Oakmead Pkwy. Sunnyvale, CA 94085

Description of the item or service required, the estimated cost, and required delivery date.

USNO requires a source for a cold calcium atomic beam that provides a calcium oven, a longitudinal (Zeeman) slowing region, and regions for transverse cooling and deflection of the cold atomic beam. Recently, commercial products that produce cold atoms for applications have come to market. These range from an entire cold-atom system including vacuum chamber, optics, and lasers, to any of the sub-assemblies. The system must be contained in a vacuum chamber that can be mounted to a USNO provided vacuum chamber for spectroscopy on the clock transition. This integration to the user-supplied chamber must be achievable without further conditioning of the vacuum in the provided beam chamber.

The required delivery date is within twelve-months of award.

Specific characteristics of the material or service that limit the availability to a sole source (unique features, function of the item, etc.). Describe in detail why only this suggested source can furnish the requirements to the exclusion of other sources.

Specifications:

1) Calcium source (oven), loaded with a minimum of 5g of Ca.

2) The oven must be able to heat Ca to >670C and run continuously at 600C or higher.

3) The oven must be able to generate a flux corresponding to 100% absorption of resonant 423nm light across the atomic beam at 600C.

4) The system must contain a region with a permanent magnet, longitudinal field Zeeman slower capable of generating velocities of 50m/s or lower with the oven at 500C, for 75mW of laser cooling light.

5) There must be a heated window for the longitudinal slowing laser. The heating must prevent the window from becoming coated with calcium metal and allow it to maintain typical transmission at 423nm without degradation.

6) The system must contain anti-reflection (for 423nm) coated windows and magnetic fields geometries to enable transverse cooling along two orthogonal to a temperature of ~3mK or lower for 30mW of cooling light.

7) There must be a mechanism for separating slow atoms from fast, uncooled atoms and from longitudinal slowing laser.

8) Gate valve or other mechanism allowing cold-atom vacuum system to be integrated to user-supplied vacuum chamber while cold-atom chamber is kept under vacuum.

9) All vacuum components must be compatible with ultrahigh vacuum conditions, enabling pressures of order 1e-10 Torr.

10) The integrated cold-atom source must be able to generate a flux of cold (~3mK transverse temperature, ~40m/s longitudinal velocity) atoms of 10^11 atoms/s or higher, out of a vacuum port that can integrate with a user-provided system.

11) There must be transverse viewports with access to the hot atomic beam to allow 423nm spectroscopy for frequency stabilization of the cooling laser.

The U.S. Naval Observatory (USNO) has a program to research and develop optical atomic clocks using a beam of calcium atoms. One of the biggest questions that needs to be answered is the potential gain in performance from using a beam of cold atoms, where laser cooling is used to reduce the center-of-mass velocity as well as the thermal distribution of velocities. Creating a beam of cold calcium atoms is accomplished using a hot oven followed by stages of longitudinal and transverse laser cooling. The laser cooling required is enabled by magnetic field gradients that tune the atomic frequency used in the cooling process.

The requested material or service represents the minimum requirements of the government.

CHECK & FILL IN ALL APPLICABLE BLANKS BELOW

Other information to support a sole source buy:

Members of the Clock Development Division carried out market research and identified three potential sources that that make and/or sell cold-atom systems: ColdQuanta, Vector Atomic, and AOSense.

ColdQuanta, Inc: The POC Evan Salim was contacted and described their system in the following detail: Cold Quanta sells cold-atom systems based on rubidium, cesium, and potassium. These atoms are alkali metals and have very different properties and requirements for making a cold-atom system than strontium, which is an alkaline-earth metal. Cold Quanta responded to the USNO requests for information and quote by indicating that they do not make systems with alkaline-earth atoms such as calcium.

AOSense, Inc: The POC at AOSense. Karin Fisher stated AOSense makes cold-atom systems using calcium, and it is a standard part for this company. AOSense provided a quote for a system (“AOSense cold calcium beam source”) that meets USNO specifications.

Vector Atomic, Inc. Market Research indicates that Vector Atomic is a young company that was started by former employees of AOSense. USNO attempted to contact Vector for a quote but received no response.

Of the three vendors that USNO identified as being sources of cold-atom systems, only AOSense can provide a cold atom beam and offered a quote for a system. There were no other potential suppliers of cold atoms systems identified during market research.

FAR 13.106-1(b) 2 of 2

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