Advances in lithium niobate photonics: development status and perspectives
Lithium niobate (LN) has experienced significant developments during past decades due to
its versatile properties, especially its large electro-optic (EO) coefficient. For example, bulk …
its versatile properties, especially its large electro-optic (EO) coefficient. For example, bulk …
Integrated photonics on thin-film lithium niobate
Lithium niobate (LN), an outstanding and versatile material, has influenced our daily life for
decades—from enabling high-speed optical communications that form the backbone of the …
decades—from enabling high-speed optical communications that form the backbone of the …
Lithium niobate photonic-crystal electro-optic modulator
Modern advanced photonic integrated circuits require dense integration of high-speed
electro-optic functional elements on a compact chip that consumes only moderate power …
electro-optic functional elements on a compact chip that consumes only moderate power …
Status and potential of lithium niobate on insulator (LNOI) for photonic integrated circuits
Lithium niobate on insulator (LNOI) technology is revolutionizing the lithium niobate industry,
enabling higher performance, lower cost and entirely new devices and applications. The …
enabling higher performance, lower cost and entirely new devices and applications. The …
Integrated lithium niobate photonics
Lithium niobate (LiNbO3) on insulator (LNOI) is a promising material platform for integrated
photonics due to single crystal LiNbO3 film's wide transparent window, high refractive index …
photonics due to single crystal LiNbO3 film's wide transparent window, high refractive index …
Advances in on-chip photonic devices based on lithium niobate on insulator
Crystalline lithium niobate (LN) is an important optical material because of its broad
transmission window that spans from ultraviolet to mid-infrared and its large nonlinear and …
transmission window that spans from ultraviolet to mid-infrared and its large nonlinear and …
Efficient bidirectional piezo-optomechanical transduction between microwave and optical frequency
Efficient interconversion of both classical and quantum information between microwave and
optical frequency is an important engineering challenge. The optomechanical approach with …
optical frequency is an important engineering challenge. The optomechanical approach with …
Lithium niobate on insulator: an emerging platform for integrated quantum photonics
Due to its properties, lithium niobate is one of the most suitable material platforms for the
implementation of integrated optical quantum circuits. With the commercialization of lithium …
implementation of integrated optical quantum circuits. With the commercialization of lithium …
Microwave-optical quantum frequency conversion
Photons at microwave and optical frequencies are principal carriers for quantum information.
While microwave photons can be effectively controlled at the local circuit level, optical …
While microwave photons can be effectively controlled at the local circuit level, optical …
Perspectives on quantum transduction
Quantum transduction, the process of converting quantum signals from one form of energy to
another, is an important area of quantum science and technology. The present perspective …
another, is an important area of quantum science and technology. The present perspective …