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Robust entangled photon generation enabled by single-shot Floquet driving

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arxiv 2504.02753 v3 pith:56VOV2VA submitted 2025-04-03 quant-ph physics.optics

Robust entangled photon generation enabled by single-shot Floquet driving

classification quant-ph physics.optics
keywords biexcitondrivingquantumresonantemittersentangledexcitationfloquet
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Quantum emitters driven by resonant two-photon excitation are a leading source for deterministically generated entangled photon pairs, essential for scalable photonic quantum technologies. However, conventional resonant schemes are highly sensitive to laser power fluctuations and pose additional experimental challenges for emitters with small biexciton binding energies. Here, we demonstrate how biexciton preparation schemes with significantly improved robustness and reduced laser filtering requirements can be identified using a novel design principle beyond resonant and adiabatic driving: ultrafast single-shot Floquet driving. This is achieved by employing two strongly and symmetrically detuned dichromatic pulses, whose superposition generates a stroboscopic Hamiltonian that enables direct coupling between ground and biexciton states. Moreover, a pulse delay serves as a tuning knob, introducing an effective magnetic field that concentrates the Bloch sphere trajectory at the biexciton state for a wide range of parameters, making biexciton preparation particularly robust. Experimentally, we achieve a biexciton occupation exceeding 96% and preserve photon-pair entanglement with a fidelity of 93.4%. Our scheme highlights the great impact of Floquet-engineered multicolour excitation protocols for on-demand quantum light sources.

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Cited by 4 Pith papers

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  1. A diode nanocavity for fast, efficient and tunable emission of highly entangled photon pairs and Fourier-transform-limited single photons

    quant-ph 2026-07 accept novelty 6.0

    A GaAs quantum dot in a p-i-n diode circular Bragg grating emits tunable entangled pairs (concurrence >0.89 over 1.6 nm) and nearly Fourier-limited indistinguishable single photons (V_HOM=0.951) with η_ext≈0.55 and F_P≈8.

  2. Efficient optimisation of multi-parameter quantum control protocols for strongly-coupled systems

    quant-ph 2026-04 unverdicted novelty 6.0

    Gradient-based optimization of SUPER and FTPE pulse protocols via auto-differentiation and uniTEMPO yields higher preparation fidelities than resonant pi-pulses or standard two-photon excitation, with the advantage in...

  3. Photon Number Coherence of a Quantum Dot-Cavity System Excited Using the SUPER Scheme

    quant-ph 2026-05 unverdicted novelty 5.0

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  4. Efficient optimisation of multi-parameter quantum control protocols for strongly-coupled systems

    quant-ph 2026-04 conditional novelty 4.5

    AD-uniTEMPO gradient optimization designs SUPER/FTPE pulse sequences that reach ~99.6% exciton and ~99.3% biexciton preparation fidelity in a strongly coupled phonon bath.