Role
Undertake both independent and collaborative research to develop and publish foundational and innovative theoretical framework to achieve a breakthrough in quantum information sciences.
Lead and develop collaborations with influential researchers, corporate or academic, in the fields of quantum computing, quantum communication, quantum cryptography, quantum sensing, and other emerging applications of quantum technologies.
Propose physical implementations and scalable architecture designs of the nanofiber cavity quantum electrodynamics (cQED), distributed neutral-atom quantum processors, and other quantum devices.
Qualifications
Must have PhD before commencing the role.
Requirements
Proven experience of theoretical research in at least one of the fields of fault-tolerant quantum computing, quantum cryptography, quantum communication, quantum algorithms, or relevant fields, with publication record commensurate with experience.
Proficient in verbal and written English communication (proficiency in Japanese is not mandatory).
Ability to work cohesively in an interdisciplinary team and adjust to a rapidly evolving environment.
Desired Experience
Track record of publications in reputable peer-reviewed academic journals.
Proficient programming skills for reproducible numerical simulations.
Basic knowledge or interest in qubit systems based on atomic, molecular, and optical (AMO) physics, including ions, optics, cavity QED and neutral atoms.
Leading role in international and interdisciplinary collaborative research.
Compensation
Competitive salary.
Skills Required
- Must have PhD before commencing the role.
- Proven experience of theoretical research in at least one of the fields of fault-tolerant quantum computing, quantum cryptography, quantum communication, quantum algorithms, or relevant fields, with publication record commensurate with experience.
- Proficient in verbal and written English communication.
What We Do
Nanofiber Quantum Technologies (NanoQT) is Japan's first quantum computer hardware startup. NanoQT is based on the unique technology of nanofiber-based Cavity QED (Quantum Electrodynamics) system developed in Japan, and aims to develop a universal quantum computer with distinctive scalability compared to conventional implementation methods. Furthermore, our technologies enables a full integration of quantum computers into quantum communication channel, realizing quantum network









