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440nm high-power large core diameter multimode fiber splitter (wavelength range 400-633nm)
Similar to the development path of traditional microelectronic chips, the emergence of photonic quantum chips is an inevitable trend in advancing photonic quantum information technology toward practical applications. Currently, mainstream photonic quantum chips mainly rely on probabilistic photon sources based on nonlinear optical processes to generate single-photon signals. However, due to the probabilistic nature of photon emission, these sources suffer from low emission efficiency and difficulties in preparing multi-photon qubits.
Similar to the development path of traditional microelectronic chips, the emergence of photonic quantum chips is an inevitable trend in advancing photonic quantum information technology toward practical applications. Currently, mainstream photonic quantum chips mainly rely on probabilistic photon sources based on nonlinear optical processes to generate single-photon signals. However, due to the probabilistic nature of photon emission, these sources suffer from low emission efficiency and difficulties in preparing multi-photon qubits.
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