Pareto-optimality of pulses for robust population transfer in a ladder-type qutrit
arXiv:2504.16646 · doi:10.1140/epjqt/s40507-025-00424-4
Abstract
Frequency-modulation schemes offer an alternative to standard Rabi pulses for realizing robust quantum operations. In this work, we investigate short-duration population transfer between the ground and first excited states of a ladder-type qutrit, with the goal of minimizing leakage into the second excited state. Our multiobjective approach seeks to reduce the maximum transient second-state population and maximize detuning robustness. Inspired by two-state models -- such as the Allen-Eberly and Hioe-Carroll models -- we extend these concepts to our system, exploring a range of pulse families, including those with super-Gaussian envelopes and polynomial detuning functions. We identify Pareto fronts for pulse models constructed from one of two envelope functions paired with one of four detuning functions. We then analyze how each Pareto-optimal pulse parameter influences the two Pareto objectives as well as amplitude robustness.
This version fixes minor typographical errors in the canonical example in the introduction. The changes do not affect any results, figures, or conclusions. Published in EPJ Quantum Technology 12, 121 (2025). DOI: 10.1140/epjqt/s40507-025-00424-4. Licensed under a CC BY-NC-ND 4.0 License
References in corpus (11)
- Charge insensitive qubit design derived from the Cooper pair box
- Simple pulses for elimination of leakage in weakly nonlinear qubits
- Controllable coherent population transfers in superconducting qubits for quantum computing
- Dynamics of Transmon Ionization
- Reducing leakage of single-qubit gates for superconducting quantum processors using analytical control pulse envelopes
- Thirty five classes of solutions of the quantum time-dependent two-state problem in terms of the general Heun functions
- Limits on Preserving Quantum Coherence using Multi-Pulse Control
- Quantum Pareto Optimal Control
- Resonant shortcuts for adiabatic rapid passage with only -field control
- State leakage during fast decay and control of a superconducting transmon qubit
- GPU-accelerated Evolutionary Multiobjective Optimization Using Tensorized RVEA