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quant-ph2026

Photonic Cluster State Generation from a Quantum Dot Emitting in the Telecom C-band

Giora Peniakov, Reza Hekmati, Johannes Michl +9

Photonic cluster states are a key resource for photonic quantum information processing. So far, deterministic generation of these states has been limited to the near-infrared wavel…

quant-ph2025

A Spin-Photon Interface in the Telecom C-Band with Long Hole Spin Dephasing Time

Johannes M. Michl, Reza Hekmati, Mohamed Helal +9

Matter qubits that maintain coherence over extended timescales are essential for many pursued applications in quantum communication and quantum computing. Significant progress has…

quant-ph2025

High-Performance Labyrinth Circular Bragg Grating Design for Charge and Stark-Tunable Quantum Light Sources Spanning Visible to Telecom Wavelengths

Rohit Prasad, Quirin Buchinger, Fei Chi Kristy Yuen +3

Semiconductor quantum dots embedded in circular Bragg gratings (CBGs) are among the most efficient integrated single-photon sources. However, the fully etched rings of conventional…

quant-ph2025

Two-Photon Interference from an InAs Quantum Dot emitting in the Telecom C-Band

Jaewon Kim, Jochen Kaupp, Yorick Reum +9

Two-photon interference from an InAs/InAlGaAs quantum dot (QD) emitting in the telecom C-band with a raw two-photon interference visibility of % is demonstra…

quant-ph2025

Analytical Fidelity Calculations for Photonic Linear Cluster State Generation

Rohit Prasad, Simon Reiß, Giora Peniakov +5

By precisely timed optical excitation of their spin, optical emitters such as semiconductor quantum dots or atoms can be harnessed as sources of linear photonic cluster states. Thi…

quant-ph2025

Deterministic and highly indistinguishable single photons in the telecom C-band

Nico Hauser, Matthias Bayerbach, Jochen Kaupp +8

Quantum dots are promising candidates for deterministic single-photon sources, yet achieving high photon indistinguishability at telecom wavelengths remains a critical challenge. H…