• Technical Conference:  15 – 19 March 2026
  • Exhibition: 17 – 19 March 2026
  • Los Angeles Convention Center, Los Angeles, California, USA
Home > Schedule > Schedule Search

Schedule Search

Search Filters
DateSession

-
(UTC - 07:00)
Robust Colorless Coherent Receiver for Next-Generation PONs: Coexistence With Legacy Systems and Multi-Wavelength Operation (M4I.3)
Haipeng Zhang CableLabs
N4: Optical Access Networks for Fixed and Mobile Services

-
(UTC - 07:00)
Integrated Silicon Nitride Nonlinear Photonic Engine Enabling High-Frequency Analog Signal Generation for Microwave Photonic Systems (M4D.3)
PING ZHAO Sichuan University

-
(UTC - 07:00)
Demonstration of a Digital Twin for an Entanglement-Based Quantum Network (M4E.3)
Ruizhi Yang University of Bristol
SC-Q: Quantum Devices, Systems and Networking

-
(UTC - 07:00)
Design Principle of Fiber-Longitudinal Power Monitor (M4A.3)
Takeo Sasai NTT
Invited

-
(UTC - 07:00)
Toward in-Fiber Integrated Optical Signal Control (M4F.3)
yoko yamashita NTT Corp.
Invited D4: Fibers and Propagation Physics S4: Optical Processing, Microwave Photonics and Fiber-sensing

-
(UTC - 07:00)
Enhanced Atmospheric Turbulence Resiliency in Free Space Optical Communication (FSOC) With MIMO Programmable Silicon-Photonics Processor (M4G.4)
Yin-He Jian National Yang Ming Chiao Tung University

-
(UTC - 07:00)
A Compact and Efficient 2D Grating Coupler for Polarization-Insensitive Fiber-to-Chip I/O (M4J.4)
Kaihang Lu Hong Kong Univ of Sci & Tech (Guangzhou)
D2: Passive Components S2: Subsystems for Transmission

-
(UTC - 07:00)
Ge/Si APD Receiver With Record-High Sensitivity Exceeding −30 dBm for 50G PON (M4K.4)
Hengzhen Cao Zhejiang University
D3: Active Components S3: Transmission Systems

-
(UTC - 07:00)
Mercury: a Reconfigurable Datacenter Network With Collaborative Optical Timeslot Switching and Optical Circuit Switching (M4H.3)
Shi Feng Beijing University of Posts and Telecomm
N2: Optical Networking for Data Center and Computing Applications

-
(UTC - 07:00)
Demonstration of High-Power PON for Higher Split Ratio and Optical Powering Using a Hollow-Core Fiber (M4I.4)
Hironori Yamaji University of Electro-Communications
N4: Optical Access Networks for Fixed and Mobile Services