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-state systems with embedded emitters, such as quantum dots integrated into photonic crystal waveguides or high-quality-factor nanocavities, giving rise to the field of quantum nanophotonics. In
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coupling between the mechanical modes of suspended bilayer graphene and the quantum dots that can be formed within it. Bilayer graphene offers a major advantage over monolayer graphene: it allows
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access the strong-field quantum electrodynamics (QED) regime using ultra-high-power laser systems. In this extreme regime, the quantum vacuum and matter exposed to ultra-intense electromagnetic fields
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diamagnetism of graphene at the Dirac point as well as the paramagnetism on van Hove singularities (Vallejo et al. Science 2021, Physical Review letters 2023, PhD thesis 2023). The PhD thesis will investigate