We combine photonic and electronic band structure engineering to create a surface-emitting quantum cascade microcavity laser. A high-index contrast two-dimensional photonic crystal is used to form a micro-resonator that simultaneously provides feedback for laser action and diffracts light vertically from the surface of the semiconductor surface. A top metallic contact allows electrical current injection and provides vertical optical confinement through a bound surface plasmon wave. The miniaturization and tailorable emission properties of this design are potentially important for sensing applications, while electrical pumping can allow new studies of photonic crystal and surface plasmon structures in nonlinear and near-field optics
We provide a numerical study showing that a bottom reflector is indispensable to achieve unidirectio...
We provide a numerical study showing that a bottom reflector is indispensable to achieve unidirectio...
Summary form only given. We designed and fabricated an LED based on a thin semiconductor membrane (λ...
We combine photonic and electronic band structure engineering to create a surface-emitting quantum c...
We describe the realization of Quantum Cascade photonic-crystal microlasers. Photonic and electronic...
We describe the realization of Quantum Cascade photonic-crystal microlasers. Photonic and electronic...
A surface emitting quantum cascade injection laser is presented. Direct surface emission is obtained...
We combine photonic and electronic band structure engineering to create a surface-emitting quantum c...
In this paper we describe the technological and fabrication methods necessary to incorporate both ph...
We describe the realization of Quantum Cascade photonic-crystal microlasers. Photonic and electronic...
The identification of the lasing mode within a quantum cascade photonic crystal microcavity laser em...
Conventional quantum cascade (QC) lasers are intrinsically edge-emitting devices with mode confineme...
In this paper we describe the technological and fabrication methods necessary to incorporate both ph...
Photonic bandgap crystals are expected to be of use in defining microcavities for modifying sponta...
We propose to use a localized G-point slow Bloch mode in a 2D-Photonic Crystal (PC) membrane to real...
We provide a numerical study showing that a bottom reflector is indispensable to achieve unidirectio...
We provide a numerical study showing that a bottom reflector is indispensable to achieve unidirectio...
Summary form only given. We designed and fabricated an LED based on a thin semiconductor membrane (λ...
We combine photonic and electronic band structure engineering to create a surface-emitting quantum c...
We describe the realization of Quantum Cascade photonic-crystal microlasers. Photonic and electronic...
We describe the realization of Quantum Cascade photonic-crystal microlasers. Photonic and electronic...
A surface emitting quantum cascade injection laser is presented. Direct surface emission is obtained...
We combine photonic and electronic band structure engineering to create a surface-emitting quantum c...
In this paper we describe the technological and fabrication methods necessary to incorporate both ph...
We describe the realization of Quantum Cascade photonic-crystal microlasers. Photonic and electronic...
The identification of the lasing mode within a quantum cascade photonic crystal microcavity laser em...
Conventional quantum cascade (QC) lasers are intrinsically edge-emitting devices with mode confineme...
In this paper we describe the technological and fabrication methods necessary to incorporate both ph...
Photonic bandgap crystals are expected to be of use in defining microcavities for modifying sponta...
We propose to use a localized G-point slow Bloch mode in a 2D-Photonic Crystal (PC) membrane to real...
We provide a numerical study showing that a bottom reflector is indispensable to achieve unidirectio...
We provide a numerical study showing that a bottom reflector is indispensable to achieve unidirectio...
Summary form only given. We designed and fabricated an LED based on a thin semiconductor membrane (λ...