COMPENSATOR SYSTEM AND METHOD FOR COMPENSATING ANGULAR DISPERSION

    公开(公告)号:CA2861716C

    公开(公告)日:2019-05-14

    申请号:CA2861716

    申请日:2012-01-05

    Applicant: FEMTONICS KFT

    Abstract: The invention relates to a compensator system adapted to compensate for the angular dispersion of electromagnetic beams deflected by at least one acousto-optic deflector. The compensator system comprises: - a first lens group for spatially separating the deflected beams of different deflection angle and angular dispersion, - a compensator element having a first surface and a second surface that together work as prisms with tilt angles .beta. and prism opening angles ap that vary with the distance from the optical axis so as to compensate for the angular dispersion of the spatially separated deflected beams, - a second lens group arranged so as to substantially parallelise the different wavelength components of each deflected beam while maintaining the angular variation of the beams deflected at different acoustic frequencies. The invention further relates to a corresponding method for compensating for the angular dispersion of electromagnetic beams deflected by an acousto-optic deflector.

    METHOD FOR THE 3-DIMENSIONAL MEASUREMENT OF A SAMPLE WITH A MEASURING SYSTEM COMPRISING A LASER SCANNING MICROSCOPE AND SUCH MEASURING SYSTEM

    公开(公告)号:CA2861721A1

    公开(公告)日:2013-07-04

    申请号:CA2861721

    申请日:2012-01-05

    Applicant: FEMTONICS KFT

    Abstract: The invention relates to a method for the 3-dimensional measurement of a sample with a measuring system having a 3-dimensional measuring space and comprising a laser scanning microscope, characterised by - providing the measuring system with a 3-dimensional virtual reality device, - creating the 3-dimensional virtual space of the measuring space using the 3-dimensional virtual reality device, - allowing for selecting an operation in the virtual space, - providing real-time unidirectional or bidirectional connection between the measuring space and the virtual space such that an operation selected in the virtual space is performed in the measuring space and data measured in the measuring space is displayed in the virtual space. The invention further relates to a measuring system for the 3-dimensional measurement of a sample, the measuring system having a 3-dimensional measuring space and comprising a laser scanning microscope, characterised by further comprising a 3-dimensional virtual reality device for displaying a 3- dimensional virtual space of the measuring space, and a real-time unidirectional or bidirectional connection is provided between the laser scanning microscope and the 3-dimensional virtual reality device.

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