International audienceWe have irradiated silicon with a series of femtosecond laser pulses to improve light absorption at the silicon surface. The laser treated surface namely black silicon shows excellent optical properties on mono and multicrystalline silicon wafers with a reflectivity reduction down to 3%, without crystal orientation dependence. After the laser process, the front side of samples has been boron-implanted by Plasma Immersion Ion Implantation to create the 3D p+ junction. Improved electrical performances have also been demonstrated with a 57% increase in the photocurrent, compared to non-texturized surfac
The thesis reports on the influence of customisable and highly light absorbing surfaces on laser-pla...
Samples of crystalline silicon for use as solar cell material are structured and hyperdoped with sul...
Femtosecond laser pulses of sub-MHz repetition rate induce highly regular periodic surface structure...
International audienceWe have irradiated silicon with a series of femtosecond laser pulses to improv...
We present a femtosecond laser pulse process that induces a texture-like surface structure on silico...
Irradiating a planar silicon surface with femtosecond laser pulses under a sulfuric atmosphere creat...
We present a femtosecond laser pulse process that induces a texture-like surface structure on silico...
AbstractWe present a femtosecond laser pulse process that induces a texture-like surface structure o...
International audienceFemtosecond lasers allow one to functionalize surfaces at a micro and nanomete...
We successfully demonstrate, incorporation of phosphorus and boron in silicon using an IR semiconduc...
International Conference on Intelligent Materials and Mechanical Engineering (MEE 2011), Guangzhou, ...
Lisää oa, kun julkaistu.The femtosecond-pulsed laser processed black silicon (fs-bSi) features high ...
Samples of crystalline silicon for use as solar cell material are structured and hyperdoped with sul...
AbstractSamples of crystalline silicon for use as solar cell material are structured and hyperdoped ...
Irradiating a plane silicon surface with a train of intense femtosecond-laser pulses in a sulfur-con...
The thesis reports on the influence of customisable and highly light absorbing surfaces on laser-pla...
Samples of crystalline silicon for use as solar cell material are structured and hyperdoped with sul...
Femtosecond laser pulses of sub-MHz repetition rate induce highly regular periodic surface structure...
International audienceWe have irradiated silicon with a series of femtosecond laser pulses to improv...
We present a femtosecond laser pulse process that induces a texture-like surface structure on silico...
Irradiating a planar silicon surface with femtosecond laser pulses under a sulfuric atmosphere creat...
We present a femtosecond laser pulse process that induces a texture-like surface structure on silico...
AbstractWe present a femtosecond laser pulse process that induces a texture-like surface structure o...
International audienceFemtosecond lasers allow one to functionalize surfaces at a micro and nanomete...
We successfully demonstrate, incorporation of phosphorus and boron in silicon using an IR semiconduc...
International Conference on Intelligent Materials and Mechanical Engineering (MEE 2011), Guangzhou, ...
Lisää oa, kun julkaistu.The femtosecond-pulsed laser processed black silicon (fs-bSi) features high ...
Samples of crystalline silicon for use as solar cell material are structured and hyperdoped with sul...
AbstractSamples of crystalline silicon for use as solar cell material are structured and hyperdoped ...
Irradiating a plane silicon surface with a train of intense femtosecond-laser pulses in a sulfur-con...
The thesis reports on the influence of customisable and highly light absorbing surfaces on laser-pla...
Samples of crystalline silicon for use as solar cell material are structured and hyperdoped with sul...
Femtosecond laser pulses of sub-MHz repetition rate induce highly regular periodic surface structure...