An on-chip low-loss and high conversion efficiency plasmonic waveguide converter is demonstrated at sub-THz in CMOS. By introducing a subwavelength periodic corrugated structure onto the transmission line (T-line) implemented by a top-layer metal, surface plasmon polaritons (SPP) are established to propagate signals with strongly localized surface-wave. To match both impedance and momentum of other on-chip components with TEM-wave propagation, a mode converter structure featured by a smooth bridge between the Ground coplanar waveguide (GCPW) with 50 Ω impedance and SPP T-line is proposed. To further reduce area, the converter is ultimately simplified to a gradual increment of groove with smooth gradient. The proposed SPP T-lines with the co...
High extinction ratio (ER) modulator and high output power source are demonstrated in 65 nm CMOS by ...
We report the experimental realization of a robust silicon-based plasmonic waveguide structure which...
With the rapid development of nanofabrication technology and powerful computational tools over the l...
An on-chip low-loss and high conversion efficiency plasmonic waveguide converter is demonstrated at ...
A low-loss and low-crosstalk surface-wave transmission line (T-line) is demonstrated at sub-THz in C...
In this paper, waveguide mode conversions in a parallel plate waveguide, rectangular waveguide, and ...
This paper presents a review of recent investigational studies on exciting Surface Plasmon Polariton...
We propose a novel way to actively control the propagation of THz Surface Plasmon Polariton (SPPs) i...
Seeking better surface plasmon polariton (SPP) waveguides is of critical importance to construct the...
We present in this chapter an introduction to the field of terahertz (THz) plasmonics. The character...
For terahertz (THz) integrated systems, an intersection between waveguides is inevitable and is ofte...
Abstract—The feasibility of realizing an active terahertz (THz) switch by utilizing artificially cor...
We propose a novel method to actively control the propagation of THz surface plasmon polaritons in p...
A surface-wave I/O transceiver is proposed and validated at 140 GHz in 65 nm CMOS. By generating, mo...
We demonstrate optical control over the transmission of terahertz (THz) radiation through a single s...
High extinction ratio (ER) modulator and high output power source are demonstrated in 65 nm CMOS by ...
We report the experimental realization of a robust silicon-based plasmonic waveguide structure which...
With the rapid development of nanofabrication technology and powerful computational tools over the l...
An on-chip low-loss and high conversion efficiency plasmonic waveguide converter is demonstrated at ...
A low-loss and low-crosstalk surface-wave transmission line (T-line) is demonstrated at sub-THz in C...
In this paper, waveguide mode conversions in a parallel plate waveguide, rectangular waveguide, and ...
This paper presents a review of recent investigational studies on exciting Surface Plasmon Polariton...
We propose a novel way to actively control the propagation of THz Surface Plasmon Polariton (SPPs) i...
Seeking better surface plasmon polariton (SPP) waveguides is of critical importance to construct the...
We present in this chapter an introduction to the field of terahertz (THz) plasmonics. The character...
For terahertz (THz) integrated systems, an intersection between waveguides is inevitable and is ofte...
Abstract—The feasibility of realizing an active terahertz (THz) switch by utilizing artificially cor...
We propose a novel method to actively control the propagation of THz surface plasmon polaritons in p...
A surface-wave I/O transceiver is proposed and validated at 140 GHz in 65 nm CMOS. By generating, mo...
We demonstrate optical control over the transmission of terahertz (THz) radiation through a single s...
High extinction ratio (ER) modulator and high output power source are demonstrated in 65 nm CMOS by ...
We report the experimental realization of a robust silicon-based plasmonic waveguide structure which...
With the rapid development of nanofabrication technology and powerful computational tools over the l...