Our recent work on high speed 850 nm VCSELs and VCSEL arrays is reviewed. With a modulation bandwidth approaching 30 GHz, our VCSELs have enabled transmitters and links operating at data rates in excess of 70 Gbps (at IBM) and transmission over onboard polymer waveguides at 40 Gbps ( at University of Cambridge). VCSELs with an integrated mode filter for single mode emission have enabled transmission at 25 Gbps over > 1 km of multimode fiber and a speed-distance product of 40 Gbps . km. Dense VCSEL arrays for multicore fiber interconnects have demonstrated 240 Gbps aggregate capacity with excellent uniformity and low crosstalk between the 40 Gbps channels
The 850 nm GaAs-based VCSEL is already the dominating technology for transmitters in optical interco...
Error-free data transmission over 1.3 and 2 km multimode fibre at 25 and 20 Gbit/s, respectively, is...
Advancements in fiber optic communication will require development and demonstration of new systems ...
Our recent work on high speed 850 nm VCSELs and VCSEL arrays is reviewed. With a modulation bandwidt...
We report on the performance of a 6-channel 850-nm VCSEL array intended for multicore fiber intercon...
We report on the performance and uniformity of dense two-dimensional 6-channel 850 nm VCSEL arrays i...
This paper presents an overview of our recent work on high speed, oxide confined, 850 nm vertical ca...
We demonstrate 850 nm datacom VCSELs capable of 40 Gbps transmission over multimode fiber. With a de...
In current data centers, most of optical links are based on vertical-cavity surface-emitting lasers ...
This paper presents recent results on high-speed, quasi-single-mode, 850 nm vertical-cavity surface-...
The short-reach optical interconnects used in datacenters and high-performance computing systems are...
Multicore fiber enables a parallel optic data link in a single optical fiber. Thus, it is an attract...
We present our recent work on high-speed optical interconnects with advanced modulation formats and ...
Single mode (SM) 850 nm vertical-cavity surface-emitting lasers (VCSELs) are suitable for error-free...
The short-reach optical interconnects used in datacenters and high-performance computing systems are...
The 850 nm GaAs-based VCSEL is already the dominating technology for transmitters in optical interco...
Error-free data transmission over 1.3 and 2 km multimode fibre at 25 and 20 Gbit/s, respectively, is...
Advancements in fiber optic communication will require development and demonstration of new systems ...
Our recent work on high speed 850 nm VCSELs and VCSEL arrays is reviewed. With a modulation bandwidt...
We report on the performance of a 6-channel 850-nm VCSEL array intended for multicore fiber intercon...
We report on the performance and uniformity of dense two-dimensional 6-channel 850 nm VCSEL arrays i...
This paper presents an overview of our recent work on high speed, oxide confined, 850 nm vertical ca...
We demonstrate 850 nm datacom VCSELs capable of 40 Gbps transmission over multimode fiber. With a de...
In current data centers, most of optical links are based on vertical-cavity surface-emitting lasers ...
This paper presents recent results on high-speed, quasi-single-mode, 850 nm vertical-cavity surface-...
The short-reach optical interconnects used in datacenters and high-performance computing systems are...
Multicore fiber enables a parallel optic data link in a single optical fiber. Thus, it is an attract...
We present our recent work on high-speed optical interconnects with advanced modulation formats and ...
Single mode (SM) 850 nm vertical-cavity surface-emitting lasers (VCSELs) are suitable for error-free...
The short-reach optical interconnects used in datacenters and high-performance computing systems are...
The 850 nm GaAs-based VCSEL is already the dominating technology for transmitters in optical interco...
Error-free data transmission over 1.3 and 2 km multimode fibre at 25 and 20 Gbit/s, respectively, is...
Advancements in fiber optic communication will require development and demonstration of new systems ...