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Quantum Sensing Jobs in Washington (NOW HIRING)

ARLIS Quantum Research Professional

College Park, MD · On-site

$17.75 - $24.50/hr

Critically evaluating the utility of emerging quantum computing, sensing, and networking technologies for DoD and IC applications. Experimental testing and evaluating of emerging quantum technology ...

The successful candidate will bring demonstrated expertise in one or more areas, including quantum computing, quantum sensing and metrology, quantum communications and networking, quantum optics ...

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Quantum Sensing information

What is quantum sensing?

Quantum sensing is a field of technology that utilizes the unique properties of quantum mechanics, such as superposition and entanglement, to measure physical quantities with extremely high precision and sensitivity. These sensors can detect tiny changes in magnetic fields, gravity, temperature, or time, outperforming traditional sensors in many cases. Quantum sensing is being applied in various industries, including navigation, medical imaging, and materials science, to enable new levels of measurement accuracy and capability.

What are the key skills and qualifications needed to thrive as a quantum sensing engineer?

To thrive as a Quantum Sensing Engineer, you need a solid background in physics or engineering, with expertise in quantum mechanics, signal processing, and experimental techniques, typically supported by an advanced degree (Master’s or Ph.D.) in a related field. Familiarity with laboratory instrumentation, programming languages like Python or MATLAB, and experience with quantum measurement systems and data analysis tools are essential. Strong problem-solving, collaboration, and communication skills help you innovate and work effectively in interdisciplinary teams. These skills are crucial for developing, optimizing, and implementing advanced quantum sensing technologies that push the boundaries of measurement precision.

What are some common challenges faced by professionals working in quantum sensing roles?

Professionals in quantum sensing often encounter challenges such as maintaining the stability and calibration of sensitive quantum devices, dealing with environmental noise that can affect measurements, and translating complex scientific findings into practical solutions. Collaboration with interdisciplinary teams—including physicists, engineers, and software developers—is common to address these issues. Staying updated with rapid advancements in quantum technologies is also essential for success and career growth in this evolving field.

What is the difference between Quantum Sensing vs Quantum Hardware Engineer?

AspectQuantum SensingQuantum Hardware Engineer
Required CredentialsPhysics or engineering degree, specialized training in quantum technologiesEngineering degree, experience with quantum device fabrication
Work EnvironmentResearch labs, industry R&D, field testingLaboratories, manufacturing facilities, R&D centers
Industry UsageSensor development, precision measurement, defense, healthcareQuantum device design, hardware development, prototyping

Quantum Sensing focuses on developing sensors that utilize quantum phenomena for precise measurements, often in research or applied settings. Quantum Hardware Engineers design and build the physical quantum devices and systems. While both roles require knowledge of quantum mechanics and engineering, Quantum Sensing emphasizes sensor application, whereas Quantum Hardware Engineering centers on device construction and hardware integration.

What are popular job titles related to Quantum Sensing jobs in Washington?

For Quantum Sensing jobs in Washington, the most frequently searched job titles are:

What job categories do people searching Quantum Sensing jobs in Washington look for?

The top searched job categories for Quantum Sensing jobs in Washington are:

What cities in Washington are hiring for Quantum Sensing jobs?

Cities in Washington with the most Quantum Sensing job openings:

Infographic showing various Quantum Sensing job openings in Washington as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution.

Applied Physicist - EO/IR, Quantum Sensors, Optics & Atmospheric with Security Clearance

Washington, DC • On-site

Other

Posted 26 days ago


Job description

Senior Physicist / Applied Physicist – EO/IR, Quantum Sensors, Optics & Atmospheric Modeling Location: Alexandria, VA / Washington, DC (Hybrid options may be available) Join Alaire Technologies
Alaire Technologies develops advanced sensing, imaging, and signal processing technologies that
provide the U.S. Navy and Marine Corps with next-generation operational capabilities. We are
seeking an exceptional PhD-level scientist to develop cutting-edge electro-optical, infrared, laser,
and quantum sensing technologies for challenging maritime and littoral environments.
If your expertise includes optics, photonics, laser systems, atmospheric propagation, quantum
sensing, radiative transfer, or advanced sensor algorithms, we would love to speak with you. Position Overview
We are seeking a PhD Physicist, Applied Physicist, Optical Physicist, Quantum Scientist, or
Atmospheric Scientist to develop advanced sensor algorithms and physics-based models
supporting next-generation Navy sensing systems.
This role combines theoretical physics, numerical modeling, signal processing, image
processing, atmospheric propagation, and experimental validation to improve the
performance of advanced electro-optical, infrared, laser, and quantum sensors.
The ideal candidate has experience developing mathematical models, validating
algorithms against experimental data, and solving complex problems involving real-world
sensing systems. Key Responsibilities - Design, develop, and validate advanced signal processing and image processing algorithms for EO/IR, laser, lidar, radar, and quantum sensing systems. - Develop atmospheric propagation, turbulence, scattering, aerosol, and radiative transfer models for maritime and littoral environments. - Perform modeling, simulation, and performance prediction for advanced sensing systems. - Develop detection, tracking, classification, target recognition, change detection, and sensor fusion algorithms. - Analyze laboratory and field-collected sensor data to calibrate, validate, and improve performance models. - Support optical system modeling, sensor characterization, and algorithm optimization. , - Collaborate with engineers, physicists, and government customers to transition research into operational software. - Participate in laboratory testing, field experiments, and at-sea demonstrations. - Prepare technical reports, white papers, peer-reviewed publications, and customer presentations. Required Qualifications PhD in one of the following: - Physics - Applied Physics - Optical Physics - Electrical Engineering - Atmospheric Science - Photonics - Optical Engineering - Quantum Science - or a closely related technical discipline Experience in several of the following: − Electro-optical (EO) systems − Infrared (IR) imaging − EO/IR sensors − Laser systems − Photonics − Optical engineering − Atmospheric propagation − Atmospheric turbulence − Radiative transfer − Scattering theory − Aerosol modeling − Signal processing − Image processing − Sensor algorithms − Statistical detection − Target tracking − Machine learning for sensing applications , − Numerical modeling − Computational physics − Sensor calibration − Experimental design − Performance modeling − Sensor validation Programming experience with one or more of: − Python − MATLAB − C − C++ − CUDA − Julia Preferred Qualifications Experience supporting: − U.S. Navy − Marine Corps − DARPA − AFRL − NRL − Naval Research Laboratory − DoD laboratories − Government R&D organizations Experience with: − Lidar − Radar − EO/IR systems − Laser sensing − Optical imaging − Remote sensing − Sensor fusion − High Performance Computing (HPC) − GPU computing , − MBSE − Digital engineering Highly Desired (Quantum Sensor Experience) Candidates with experience in quantum technologies are especially encouraged to apply. Examples include: − Quantum sensors − Quantum optics − Quantum photonics − Quantum metrology − Atomic physics − AMO Physics − Precision measurement − Laser spectroscopy − Cold atom systems − Atom interferometry − Optical frequency standards − Quantum magnetometers − Quantum gravimeters − Quantum inertial navigation − Quantum accelerometers − Quantum gyroscopes − Quantum clocks − NV-center sensing − Atomic clocks − Optical clocks − Frequency combs − Bose-Einstein Condensates − Optical trapping − Laser cooling Ideal Background ,We are interested in scientists who have worked in areas such as: − Optical Physics − Applied Physics − Quantum Physics − Experimental Physics − Computational Physics − Atmospheric Physics − Photonics − Laser Physics − Remote Sensing − Electro-Optics − Infrared Imaging − Imaging Science − Computer Vision − Signal Processing − Sensor Development − Defense Research − Naval Sensing − Aerospace Sensors