Photonics Circuit Designer
![]() | |
![]() | |
![]() United States, California, Palo Alto | |
![]() 700 Hansen Way (Show on map) | |
![]() | |
Quantum computing holds the promise of humanity's mastery over the natural world, but only if we can build a real quantum computer. PsiQuantum is on a mission to build the first real, useful quantum computers, capable of delivering the world-changing applications that the technology has long promised. We know that means we will need to build a system with roughly 1 million qubits that supports fault tolerant error correction within a scalable architecture, and a data center footprint. By harnessing the laws of quantum physics, quantum computers can provide exponential performance increases over today's most powerful supercomputers, offering the potential for extraordinary advances across a broad range of industries including climate, energy, healthcare, pharmaceuticals, finance, agriculture, transportation, materials design, and many more. PsiQuantum has determined the fastest path to delivering a useful quantum computer, years earlier than the rest of the industry. Our architecture is based on silicon photonics which gives us the ability to produce our components at Tier-1 semiconductor fabs such as GlobalFoundries where we leverage high-volume semiconductor manufacturing processes, the same processes that are already producing billions of chips for telecom and consumer electronics applications. We also benefit from the quantum mechanics reality that photons don't feel heat or electromagnetic interference, allowing us to take advantage of existing cryogenic cooling systems and industry standard fiber connectivity. In 2024, PsiQuantum announced two government-funded projects to support the build-out of our first Quantum Data Centers and utility-scale quantum computers in Brisbane, Australia and Chicago, Illinois. Both projects are backed by nations that understand quantum computing's potential impact and the need to scale this technology to unlock that potential. And we won't just be building the hardware, but also the fault tolerant quantum applications that will provide industry-transforming results. Quantum computing is not just an evolution of the decades-old advancement in compute power. It provides the key to mastering our future, not merely discovering it. The potential is enormous, and we have the plan to make it real. Come join us. There's much more work to be done and we are looking for exceptional talent to join us on this extraordinary journey! Job Summary: Quantum computing promises to solve many important problems that could never be solved on any conventional computer. At PsiQuantum, we're building a general-purpose silicon photonic quantum computer to tackle these problems. We seek a creative and innovative individual with strong fundamentals in photonic devices and circuits. This role focuses on pushing the boundaries of high-performance integrated photonic circuits. The ideal candidate will be proficient in photonic device and circuit modeling and electromagnetic simulation packages, as well as the layout of photonics circuits, and have excellent software skills for simulation, circuit definition, and data analysis. Responsibilities * Data-
driven modeling of
linear
photonic devices
at different scales and with diverse methods.
*
Design and optimization of photonic circuits
.
*
Full simulation of complex photonic circuits
,
including m
odeling of photon-pair generation through spontaneous four-wave mixing.
*
Schematic representation of
photonic circuits.
*
Coordination of photonic circuits layout.
*
D
ata analysis to evaluate and understand the performance of photonic devices and circuits.
*
Collaboration with component design and circuit characterization teams to ensure the validation of photonic circuits. Experience/Qualifications Education *
PhD or equivalent in Electrical
Engineering
or
Physics. Experience *
5 years of relevant work or academic research experience in integrated photonics. Knowledge, Skills and Abilities *
In-depth knowledge of photonic devices, including performance metrics and testing techniques
.
*
Extensive experience with photonic design using commercial software platforms.
*
Experience with integrated photonic circuit layout.
*
Extensive experience with Python for scientific applications and data manipulation
.
*
Excellent communication skills and the ability to collaborate effectively across technical and non-technical teams.
*
Experience
using the Wolfram Language
is a plus
. PsiQuantum provides equal employment opportunity for all applicants and employees. PsiQuantum does not unlawfully discriminate on the basis of race, color, religion, sex (including pregnancy, childbirth, or related medical conditions), gender identity, gender expression, national origin, ancestry, citizenship, age, physical or mental disability, military or veteran status, marital status, domestic partner status, sexual orientation, genetic information, or any other basis protected by applicable laws. We are not accepting unsolicited resumes from employment agencies. The range below reflects the minimum and maximum target range for new hire base salary across all US locations. Actual compensation may vary outside of this range and is dependent on various factors including but not limited to a candidate's qualifications including relevant education and training, competencies, experience, geographic location, and business needs. Base pay is only one part of the total compensation package. Full time roles are eligible for equity and benefits. Base pay is subject to change and may be modified in the future. Base Pay Range
$120,000
—
$165,000 USD |