Job Description
Shape the future with Nexus Future Labs! We're seeking a visionary Quantum Computing Research Scientist to pioneer breakthroughs in quantum algorithms and applications. Join our elite team at the forefront of 2026's technological revolution, working with cutting-edge quantum systems to solve humanity's most complex challenges. This role offers unparalleled opportunities to publish groundbreaking research, collaborate with Nobel laureates, and transform industries from healthcare to finance.
At Nexus Future Labs, we've assembled the world's brightest minds to harness quantum mechanics' untapped potential. Our state-of-the-art San Francisco facility houses next-generation quantum processors and immersive simulation environments. As a key contributor, you'll drive innovation in quantum error correction, topological computing, and quantum machine learning.
We offer competitive compensation, flexible work arrangements, and continuous learning opportunities through our partnership with MIT's Quantum Engineering Center. Join us in building the quantum-powered tomorrow.
Responsibilities
- Design and implement novel quantum algorithms for optimization, cryptography, and machine learning applications
- Lead experimental research on superconducting qubits and trapped-ion quantum processors
- Develop error correction protocols and fault-tolerant quantum computing architectures
- Collaborate with cross-functional teams to integrate quantum solutions into commercial products
- Publish research in leading journals (Nature, Science, Physical Review X) and present at IEEE Quantum Week
- Mentor junior researchers and contribute to quantum computing open-source frameworks
- Secure research grants and patents for quantum innovations
Qualifications
- PhD in Physics, Computer Science, or Electrical Engineering with quantum computing specialization
- 3+ years of hands-on experience with quantum programming languages (Qiskit, Cirq, Q#)
- Expertise in quantum error correction and fault-tolerant architectures
- Publication record in top-tier quantum computing journals/conferences
- Proficiency with quantum hardware platforms (IBM Quantum, Rigetti, IonQ)
- Strong background in linear algebra, quantum mechanics, and complexity theory
- Experience securing research funding (NSF, DOE, DARPA grants preferred)