We are looking for Physics Expert (AMO / Quantum Information) candidates for a project delivered through micro1.
What you'll do
- Analyze and model cascaded optical parametric amplifiers and SU(1,1) interferometric systems under realistic loss mechanisms.
- Apply Bogoliubov transformations and covariance-matrix techniques to quantify quantum correlations and noise properties.
- Derive and interpret sideband photocurrent spectra utilizing homodyne detection methodologies.
- Implement and critique loss modeling via fictitious beamsplitters, ensuring robust benchmarking against theoretical and experimental scenarios.
- Utilize squeeze-parameter hyperbolic identities to characterize entanglement and squeezing performance in lossy quantum systems.
Nice to have
- Proven expertise with Bogoliubov transformations, covariance-matrix formalism, and quantum noise analysis.
- Hands-on familiarity with sideband spectra, homodyne detection, and modeling of quantum optical loss mechanisms.
- Demonstrated ability applying squeeze-parameter hyperbolic identities in practical research or experimental analysis.
- Familiarity with frontier research involving cascaded parametric amplifiers, SU(1,1) interferometry, or two-mode squeezing is highly valued.
Expertise
Who you work with
Project and contracting process: micro1. Applications continue on the provider's website.

