URL: http://www.iap.uni-jena.de/Optical+System+Design/Publications-p-197.print

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25 |
C. Liu, C. Straif, T. Flügel-Paul, U.D. Zeitner, H. Gross, "Comparison of hyperspectral imaging spectrometer designs and the improvement of system performance with freeform surfaces,"
Appl. Optics 56 (24), 6894-6901 (2017). |

24 |
S. Schmidt, S. Thiele, A. Herkommer, A. Tünnermann, H. Gross, "Rotationally symmetric formulation of the wave propagation method-application to the straylight analysis of diffractive lenses,"
Opt. Lett. 42 (8), 1612-1615 (2017). |

23 |
C. Bösel, H. Gross, "Ray mapping approach for the efficient design of continuous freeform surfaces,"
Opt. Express 24, 14271 (2016). |

22 |
G. Matz, B. Messerschmidt, H. Gross, "Design and evaluation of new color-corrected rigid endomicroscopic high NA grin-objectives with a submicron resolution and large field of view,"
Opt. Express 24 (10), 10987-1001 (2016). |

21 |
M. Zhong, H. Gross, "Phase space of partially coherent light with discontinuous surfaces,"
J. Eur. Opt. Soc.-Rapid Publ. 12, 5 (2016). |

20 |
M. Zhong, H. Gross, "Propagation algorithms for Wigner functions,"
J. Eur. Opt. Soc.-Rapid Publ. 12, 7 (2016). |

19 |
S. Schmidt, A. E. Klein, T. Paul, H. Gross, S. Diziain, M. Steinert, A. C. Assafrao, T. Pertsch, H. P. Urbach, C. Rockstuhl, "Image formation properties and inverse imaging problem in aperture based scanning near field optical microscopy,"
Opt. Express 24 (4), 4128-4142 (2016). |

18 |
S. Schmidt, T. Tiess, S. Schröter, R. Hambachg, M. Jäger, H. Bartelt, A. Tünnermann, H. Gross, "Wave-optical modeling beyond the thin-element-approximation ,"
Opt. Express 24 (26), 30188-30200 (2016). |

17 |
M. Eßlinger, H. Gross, "Simulation of differential interference contrast microscopy and influence of aberrations,"
J. Microsc. 259 (1), 59-65 (2015). |

16 |
M. Tessmer, H. Gross, "Generalized propagation of light through optical systems. II. Numerical results,"
J. Opt. Soc. Am. A-Opt. Image Sci. Vis. 32 (12), 2276-2285 (2015). |

15 |
M. Tessmer, H. Gross, "Generalized propagation of light through optical systems. II. Mathematical basics ,"
J. Opt. Soc. Am. A-Opt. Image Sci. Vis. 32 (2), 258-266 (2015). |

14 |
H. Gross, "Waveoptical Simulation of a spectral narrowed resonator,"
#NV 7717-28 (2010). |

13 |
M. Kieweg, H. Gross, T. Sievers, L. Müller, "Ill-posedness of space variant image deconvolution,"
#NV 7800-K (2010). |

12 |
H. Gross, M. Hofmann, R. Jedamzik, P. Hartmann, S. Sinzinger, "Measurement and Simulation of Striae in Optical Glass,"
#NV 7389-49 (2009). |

11 |
B. Möller, H. Gross, "Characterization of complex optical systems based on wavefront retrieval from point spread function,"
#NV 5965-42 (2005). |

10 |
K. Uhlendorf, H. Gross, L. Schreiber, R. Wartmann, "Development and design of optical systems for microscopes at Carl Zeiss,"
#NV 5962-23 (2005). |

9 |
M. Wald. M. Burkhardt, A. Pesch, H. Gross, J. Greif, "Design of a microscopy illumination using a partial coherent light source,"
#NV 5962-50 (2005). |

8 |
S. Förster, H. Gross, F. Höller, L. Höring, "Extended depth of focus as a process of pupil manipulation,"
#NV 5962, 44-53 (2005). |

7 |
H. Gross, "Numerical propagation of partially coherent laser beams through optical systems,"
Opt. Laser Technol. 29, 257 (1997). |

6 |
R. Freimann, H. Gross, "Propagation of the phase distribution through double telecentric optical systems,"
Optik 105, 69 (1997). |

5 |
H. Gross, "Calculation of the propagation of partially coherent beams through optical systems,"
#NV 2870-20 (1996). |

4 |
C. Petersen, D. Eisel, J. Brzezinski, H. Gross, "Mode and wavelength selectivity in slab geometry CO2 lasers,"
#NV 2206-12 (1994). |

3 |
W. Ludwig, P. Schäffer, H. Gross, T. Lasser, P. Reimer, "Simulation of the PRK photoablation process and consequences for retinal image formation,"
#NV 6, 239 (1994). |

2 |
A. Dorsel, H. Gross, A. Reule, "Estimation of production tolerances for a focusing grating coupler,"
Appl. Optics 31, 5158 (1992). |

1 |
H. Glatzel, P. Pauschinger, H.-J. Frasch, H. Gross, "Optical Performance Prediction of Thin-Walled Wolter Type I Mirror Shells for X-Rays in the 1-8 keV energy range,"
#NV 1742, 18 (1992). |