Quantum-dot single photon source performance with off-resonant pulse preparation schemes
arXiv:2511.00243 · doi:10.1103/3fd4-x4d1
Abstract
The preparation of photonic qubits in the excited state is an integral part of the performance of an on-demand single photon source (SPS). Conventional resonant excitation, an excellent approach to maximize the coherence and indistinguishability of the SPS, often requires polarization filtering to remove the pump signal and isolate the qubit emission, but this results in an inherent 50\% hit to the efficiency. Recent excitation schemes strategically try to exploit pulses that excite the qubit while avoiding spectral overlap to bypass this required filtering. In this work, we compare three such pumping schemes to quantify the important SPS figures-of-merit for off-resonant quantum dot schemes, using: (i) a symmetrically detuned dichromatic pulse, (ii) a notch-filtered adiabatic rapid passage (NARP) pulse, and (iii) a swing up of the quantum emitter population (SUPER) pulse. Due to large instantaneous pulse strengths, the dichromatic pulse suffers from phonon-induced dephasing which can lower the SPS performance by up to 50\%. In contrast, the NARP and SUPER pulses are shielded from phonon coupling to differing degrees but both maintain excellent SPS performance. The SUPER pulse can lose significant efficiency if there is variance in its constituent pulses' amplitude, pulse width, or frequency, while the NARP pulse, though potentially more difficult to realize in experiments, is robust against variance in the pulse preparation.
12 pages, 7 figures
References in corpus (45)
- Near optimal single photon sources in the solid state
- On-Demand Single Photons with High Extraction Efficiency and Near-Unity Indistinguishability from a Resonantly Driven Quantum Dot in a Micropillar
- On-demand semiconductor single-photon source with near-unity indistinguishability
- Tunable and high purity room-temperature single photon emission from atomic defects in hexagonal boron nitride
- On-demand generation of indistinguishable polarization-entangled photon pairs
- A solid-state entangled photon pair source with high brightness and indistinguishability
- Quantum dot single photon sources: Prospects for applications in linear optics quantum information processing
- Deterministic coupling of a single nitrogen vacancy center to a photonic crystal cavity
- On-demand generation of background--free single photons from a solid-state source
- Spin-resolved quantum-dot resonance fluorescence
- Phonon induced Rabi frequency renormalization of optically driven single InGaAs/GaAs quantum dots
- Quantum dot Rabi rotations beyond the weak exciton-phonon coupling regime
- Phonon limit to simultaneous near-unity efficiency and indistinguishability in semiconductor single photon sources
- Microwave-controlled generation of shaped single photons in circuit quantum electrodynamics
- Quantum dot single photon sources with ultra-low multi-photon probability
- A general approach to quantum dynamics using a variational master equation: Application to phonon-damped Rabi rotations in quantum dots
- Bright Polarized Single-Photon Source Based on a Linear Dipole
- Polarized fine structure in the excitation spectrum of a negatively charged quantum dot
- Modelling exciton-phonon interactions in optically driven quantum dots
- Dissipative preparation of the exciton and biexciton in a self-assembled quantum dot on picosecond timescales
- Overcoming power broadening of the quantum dot emission in a pure wurtzite nanowire
- Coherently driving a single quantum two-level system with dichromatic laser pulses
- Swing-up of quantum emitter population using detuned pulses
- Indistinguishable photons from deterministically integrated single quantum dots in heterogeneous GaAs/SiN quantum photonic circuits
- Phonon-Assisted Incoherent Excitation of a Quantum Dot and its Emission Properties
- Highly indistinguishable single photons from incoherently and coherently excited GaAs quantum dots
- Pure single photons from a trapped atom source
- The crux of using the cascaded emission of a 3-level quantum ladder system to generate indistinguishable photons
- SUPER Scheme in Action: Experimental Demonstration of Red-detuned Excitation of a Quantum Dot
- Emission-frequency separated high quality single-photon sources enabled by phonons
- Coherent Dynamics in Quantum Emitters under Dichromatic Excitation
- Polaron master equation theory of pulse driven phonon-assisted population inversion and single photon emission from quantum dot excitons
- Accuracy of the quantum regression theorem for photon emission from a quantum dot
- Tunable Microwave Single-photon Source Based on Transmon Qubit with High Efficiency
- Efficient Pulse-Excitation Techniques for Single Photon Sources from Quantum Dots in Cavities
- High Purity Single Photons Entangled with an Atomic Memory
- Path-integral approach for nonequilibrium multi-time correlation functions of open quantum systems coupled to Markovian and non-Markovian environments
- Highly efficient and indistinguishable single-photon sources via phonon-decoupled two-color excitation
- ACE: A general-purpose non-Markovian open quantum systems simulation toolkit based on process tensors
- In-plane emission of indistinguishable photons generated by an integrated quantum emitter
- Swing-up dynamics in quantum emitter cavity systems
- Temperature-independent almost perfect photon entanglement from quantum dots via the SUPER scheme
- Phonon wave packet emission during state preparation of a semiconductor quantum dot using different schemes
- All-optical Tuning of Indistinguishable Single-Photons Generated in Three-level Quantum Systems
- Improving On-Demand Single Photon Source Coherence and Indistinguishability Through a Time-Delayed Coherent Feedback