EP0124924A1

Semiconductor devise for generating electromagnetic radiation.

Abstract

A semiconductor LED or laser, having an active layer- shaped region (1) composed of a layer structure comprising active layers (4) and barrier layers (5). The layer structure constitutes a super lattice structure. Both the active layers (4) and the barrier layers (5) consist of either a stoichoimetric semiconductor compound or a semiconductor element. According to the invention, the active layers (4) each consist of mono layers and the barrier layers (5) each consist ofm mono layers, where 2≤ n ≤ 7,2≤m ≤ 7 and n + m≤ 12, in order to obtain an optimum combination of zone-folding effect and quantum well effect. Thus, lasers and LED's for wave-lengths in the visible part of the spectrum can be realized.

EP0124924A1, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Projected expiry passed 4 April 2004, 22.5 years ago.

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5 claims: 2 independent, 3 dependent

  1. 1
    A semiconductor device for generating electro-magnetic radiation in an active layer-shaped semiconductor region, in which the active region is composed of a layer structure comprising active layers of a first semiconductor material having substantially equal thicknesses which are located between and separated by barrier layers of a second semiconductor material likewise having substantially equal thicknesses and having a larger energy gap than the first semiconductor material, both the active layers and the barrier layers consisting either of a stoichiometric semiconductor compound or of a semiconductor element and together constituting a superlattice structure, characterized in that the active layers each comprise n mono layers and the barrier layer.s each comprise m mono layers, where n and m are integers and satisfy the conditions:2 ≤ n ≤ 7, 2 m 7 and n+m ≤ 12.
  2. 5
    A semiconductor device as claimed in any one of the preceding Claims, characterized in that the device is a semiconductor laser, the layer-shaped active semiconductor region lying between two semiconductor cladding layers having a larger energy gap than the effective energy gap of the active region.