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Nano Jobs in Wisconsin (NOW HIRING)

WI · On-site

$143 - $247/hr

Demonstrated leadership in integrated photonics, nanophotonics, quantum emitters, quantum optics, or quantum hardware development. * Experience developing photonic integrated circuits using silicon ...

Learn how we address challenging characterization needs in diverse markets: semiconductor, nanotechnology and novel materials, nuclear science, energy, biology, environment, mining, geology. * CAMECA ...

Today, our products serve a broad range of laboratory and process control applications in end markets that include semiconductor, nanoscience, environment, geology, nuclear, and material sciences.

WI · On-site

$69 - $104/hr

You are fluent in English and you have strong communication skills, enabling effective collaboration across a multicultural team Imec is a premier research hub in nanoelectronics and digital ...

Our solutions in the Life Science and Materials Science business units accelerate current and future developments such as novel drugs, energy materials, catalysts, nanomaterials in a wide range of ...

Showing results 21-27

Nano information

See Wisconsin salary details

$13

$24

$35

How much do nano jobs pay per hour?

As of Aug 23, 2026, the average hourly pay for nano in Wisconsin is $24.90, according to ZipRecruiter salary data. Most workers in this role earn between $19.90 and $28.37 per hour, depending on experience, location, and employer.

What is a nano?

Nano jobs refer to careers that involve working with nanotechnology, which is the science, engineering, and application of materials and devices at the nanometer scale (one billionth of a meter). Professionals in this field may develop new materials, create medical devices, or improve electronic components using nanoscale techniques. Common roles include nanotechnologists, research scientists, and nanoengineers. These jobs are typically found in industries such as healthcare, electronics, energy, and materials science. A strong background in physics, chemistry, biology, or engineering is often required.

What are some common challenges faced by nanotechnology engineers in interdisciplinary team environments?

Nanotechnology engineers often work in interdisciplinary teams that include chemists, physicists, biologists, and materials scientists. A common challenge is effectively communicating complex technical concepts across different fields and ensuring that project goals align despite varying perspectives. Successfully navigating these challenges requires strong collaboration, adaptability, and a willingness to learn from colleagues in related disciplines. Embracing regular team meetings and transparent communication can help facilitate smoother project workflows and innovation.

What are the key skills and qualifications needed to thrive as a nanotechnologist, and why are they important?

To thrive as a Nanotechnologist, a strong background in chemistry, physics, materials science, and often a relevant advanced degree is required. Familiarity with specialized laboratory equipment such as electron microscopes, nanofabrication tools, and simulation software is critical. Attention to detail, analytical thinking, and effective teamwork are vital soft skills for this role. These skills and qualities enable the precise manipulation and analysis of materials at the nanoscale, ensuring successful research and product development.

What is the difference between Nano vs Chemical Technician?

AspectNanoChemical Technician
Required CredentialsTypically a Bachelor's degree in Nanotechnology, Materials Science, or related fieldsAssociate's or Bachelor's degree in Chemistry, Chemical Engineering, or related fields
Work EnvironmentResearch labs, cleanrooms, advanced manufacturing facilitiesLaboratories, manufacturing plants, industrial settings
Industry UsageResearch and development, nanomaterials productionChemical manufacturing, quality control, process support
Common Search/ComparisonNano vs Chemical Technician

Nano professionals focus on manipulating materials at the nanoscale, often requiring advanced degrees and working in R&D environments. Chemical Technicians support chemical processes, testing, and manufacturing, typically with associate or bachelor's degrees. While both roles involve laboratory work, Nano roles are more research-oriented, whereas Chemical Technicians are more production and quality-focused.

Does nanotechnology pay well?

Nanotechnology jobs, including roles like nanotechnologist or research scientist, tend to offer competitive salaries due to the specialized skills and advanced education required. Entry-level positions may start lower, but experienced professionals with skills in materials science, microscopy, and laboratory techniques can earn high wages, especially in research, development, or industry sectors. Salary levels also depend on location, industry, and level of experience.

How to get a job in nanotechnology?

To get a job in nanotechnology, candidates typically need a bachelor's degree in nanotechnology, materials science, physics, chemistry, or engineering, with advanced roles often requiring a master's or Ph.D. The field values skills in microscopy, characterization tools, and programming, along with experience in research or laboratory work. Gaining internships, certifications, and staying updated on industry developments can improve employment prospects.

Is nanotech a good career?

A career in nanotechnology involves working with materials and devices at the nanoscale, often requiring a background in engineering, physics, or chemistry. It offers opportunities in research, development, and manufacturing across industries like healthcare, electronics, and energy, with roles typically requiring specialized education and skills in microscopy and material analysis.

What are popular job titles related to Nano jobs in Wisconsin?

For Nano jobs in Wisconsin, the most frequently searched job titles are:

Infographic showing various Nano job openings in Wisconsin as of August 2026, with employment types broken down into 1% As Needed, 87% Full Time, 10% Part Time, 1% Contract, and 1% Nights. Highlights an 84% Physical, 3% Hybrid, and 13% Remote job distribution, with an average salary of $51,799 per year, or $24.9 per hour.

Quantum Photonics Modality Integration

Socket.dev

WI • On-site

$143 - $247/hr

Other

Posted 5 days ago


Job description

The Quantum Photonics Modality Integration (PMTS) role is a senior technical leader within GF Labs and Quantum Technology Solutions responsible for enabling scalable photonic quantum computing platforms. This position drives the integration of quantum photonic devices, quantum emitters, photonic integrated circuits (PICs), advanced materials, heterogeneous integration, and manufacturable process technologies required for large-scale fault-tolerant quantum systems. The role provides technical leadership across internal development teams, external ecosystem partners, and strategic customer engagements.

About GlobalFoundries:

GlobalFoundries is a leading full-service semiconductor manufacturer providing a unique combination of design, development, and fabrication services to some of the world’s most inspired technology companies. With a global manufacturing footprint spanning three continents, GlobalFoundries makes possible the technologies and systems that transform industries and give customers the power to shape their markets. For more information, visit www.gf.com.

Summary of Role:

As a Principal Member of Technical Staff, this role defines and leads the technology roadmap for GF's quantum photonics modality. The position combines deep expertise in photonic device physics, semiconductor manufacturing, advanced materials, and quantum hardware integration to develop scalable foundry-compatible platforms spanning silicon photonics, silicon nitride, quantum emitters, electro-optic devices, cryogenic photonics, and heterogeneous integration.

Essential Responsibilities
  • Lead development of GF's photonic quantum hardware roadmap, integration strategy, and technology maturation plans.
  • Define manufacturable process flows for quantum photonic integrated circuits, quantum emitters, single-photon sources, detectors, modulators, resonators, and optical interconnects.
  • Drive integration of advanced material systems including SiN, AlN, Al₂O₃, lithium niobate, III-V materials, quantum dots, color centers, and heterogeneous photonic platforms.
  • Develop scalable approaches for quantum emitter integration, photon routing, entanglement distribution, and photonic quantum networking architectures.
  • Lead cross-functional teams spanning device engineering, process integration, metrology, design enablement, packaging, characterization, and manufacturing.
  • Interface directly with strategic quantum computing customers, university partners, national laboratories, and ecosystem collaborators.
  • Establish technology metrics, yield-learning methodologies, reliability plans, and manufacturing readiness criteria.
  • Mentor technical staff and provide thought leadership through publications, conferences, patents, and customer presentations.
Required Qualifications
  • PhD in Electrical Engineering, Applied Physics, Physics, Photonics, Materials Science, or related discipline.
  • 15+ years of experience in photonic device development, quantum photonics, semiconductor R&D, or advanced technology integration.
  • Demonstrated leadership in integrated photonics, nanophotonics, quantum emitters, quantum optics, or quantum hardware development.
  • Experience developing photonic integrated circuits using silicon photonics, silicon nitride, III-V photonics, lithium niobate, or related platforms.
  • Deep knowledge of device simulation tools such as Lumerical, COMSOL, HFSS, MEEP, or equivalent.
  • Strong record of technical innovation including publications, patents, technology transfers, and external leadership.
Preferred Qualifications
  • Experience with photonic quantum computing architectures.
  • Experience with single-photon sources, quantum emitters, color centers, quantum dots, or cryogenic optical systems.
  • Experience with wafer-scale photonic integration and foundry manufacturing.
  • Previous leadership of large R&D programs or technical organizations.
  • Experience working with quantum ecosystem leaders, national laboratories, or photonic start-ups.
  • Recognized expert with substantial publication, patent, and external speaking record.
Expected Salary Range

$143,000.00 - $247,000.00

The exact Salary will be determined based on qualifications, experience and location.

If you need a reasonable accommodation for any part of the employment process, please contact us by email at usaccommodations@gf.com and let us know the nature of your request and your contact information. Requests for accommodation will be considered on a case‑case basis. Please note that only inquiries concerning a request for reasonable accommodation will be responded by from this email address.

An offer with GlobalFoundries is conditioned upon the successful completion of pre-employment conditions, as applicable, and subject to applicable laws and regulations.

GlobalFoundries is fully committed to equal opportunity in the workplace and believes that cultural diversity within the company enhances its business potential. GlobalFoundries goal of excellence in business necessitates the attraction and retention of highly qualified people. Artificial barriers and stereotypic biases detract from this objective and may be illegally discriminatory.

All policies and processes which pertain to employees including recruitment, selection, training, utilization, promotion, compensation, benefits, extracurricular programs, and termination are created and implemented without regard to age, ethnicity, ancestry, color, marital status, medical condition, mental or physical disability, national origin, race, religion, political and/or third-party affiliation, sex, sexual orientation, gender identity or expression, veteran status, or any other characteristic or category specified by local, state or federal law

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