Orbital angular momentum (OAM) multiplexing has emerged as an important method to increase the communication capacities in future optical information technologies. In this work, we demonstrate a silicon integrated OAM (de)multiplexer with a very simple structure. By simply tapping the evanescent wave of two different whispering gallery modes rotating inside a multimodal micro-ring resonator, four in-plane waveguide modes are converted to four free-space vector OAM beams with high mode purity. We further demonstrate chip-to-chip OAM multiplexing transmission using a pair of silicon devices, which shows low-level mode crosstalk and favorable link performance
Mode division multiplexing (MDM)– using a multimode optical fiber’s N spatial modes as data channels...
Mode division multiplexing (MDM)– using a multimode optical fiber’s N spatial modes as data channels...
Spatial multiplexing using orbital angular momentum (OAM) modes is an efficient means of scaling up ...
Orbital angular momentum (OAM) multiplexing has emerged as an important method to increase the commu...
Orbital angular momentum (OAM) multiplexing has emerged as an important method to increase the commu...
Orbital angular momentum (OAM) multiplexing has emerged as an important method to increase the commu...
Orbital angular momentum (OAM) multiplexing has emerged as an important method to increase the commu...
Orbital angular momentum (OAM) multiplexing has emerged as an important method to increase the commu...
Orbital angular momentum (OAM) multiplexing has emerged as an important method to increase the commu...
We demonstrate silicon photonic orbital angular momentum multiplexing devices based on mulitmode mic...
We demonstrate silicon photonic orbital angular momentum multiplexing devices based on mulitmode mic...
Mode division multiplexing (MDM)– using a multimode optical fiber’s N spatial modes as data channels...
Orbital angular momentum (OAM) modes have low model interactions during fiber propagation at data ce...
Mode division multiplexing (MDM)– using a multimode optical fiber’s N spatial modes as data channels...
Mode division multiplexing (MDM)– using a multimode optical fiber’s N spatial modes as data channels...
Mode division multiplexing (MDM)– using a multimode optical fiber’s N spatial modes as data channels...
Mode division multiplexing (MDM)– using a multimode optical fiber’s N spatial modes as data channels...
Spatial multiplexing using orbital angular momentum (OAM) modes is an efficient means of scaling up ...
Orbital angular momentum (OAM) multiplexing has emerged as an important method to increase the commu...
Orbital angular momentum (OAM) multiplexing has emerged as an important method to increase the commu...
Orbital angular momentum (OAM) multiplexing has emerged as an important method to increase the commu...
Orbital angular momentum (OAM) multiplexing has emerged as an important method to increase the commu...
Orbital angular momentum (OAM) multiplexing has emerged as an important method to increase the commu...
Orbital angular momentum (OAM) multiplexing has emerged as an important method to increase the commu...
We demonstrate silicon photonic orbital angular momentum multiplexing devices based on mulitmode mic...
We demonstrate silicon photonic orbital angular momentum multiplexing devices based on mulitmode mic...
Mode division multiplexing (MDM)– using a multimode optical fiber’s N spatial modes as data channels...
Orbital angular momentum (OAM) modes have low model interactions during fiber propagation at data ce...
Mode division multiplexing (MDM)– using a multimode optical fiber’s N spatial modes as data channels...
Mode division multiplexing (MDM)– using a multimode optical fiber’s N spatial modes as data channels...
Mode division multiplexing (MDM)– using a multimode optical fiber’s N spatial modes as data channels...
Mode division multiplexing (MDM)– using a multimode optical fiber’s N spatial modes as data channels...
Spatial multiplexing using orbital angular momentum (OAM) modes is an efficient means of scaling up ...