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J. Eur. Opt. Society-Rapid Publ. 22, 21( 2026)
61 Frank S, Zhang W, Thelemann D, Elies O, Arnold T, Bliedtner J, in Proceedings of the EOSAM 2024, Neapel, 2024( EPJ Web Conferences 309, Les Ulis, 2024), p. 3010. https:// doi. org / 10.1051 / epjconf / 202430903010.
62 Frank S, Reichenbächer M, Seiler M, Thelemann D, Arnold T, Bliedtner J, Revealing subsurface damage morphology and patterns in areal ultrashort pulse laser machining of glass, Lasers Manuf. Mater. Proc. 11, 631( 2024). https:// doi. org / 10.1007 / s40516-024-00262-9.
63 Müller H, Arnold T, in Proceedings of the Twelfth European Seminar on Precision Optics Manufacturing, Teisnach, 2025, edited by G. Fütterer, C. Wünsche, OW. Fähnle, H. Thieß and A. Haberl( Proceedings Volume 13789, SPIE, 2025), p. 5. https:// doi. org / 10.1117 / 12.3074295.
64 Yang F, Effect of subsurface damage on indentation behavior of ground ULE™ glass, J. non-Cryst. Solids 351, 3861( 2005). https:// doi. org / 10.1016 / j. jnoncrysol. 2005.10.022.
65 Yao P, Wang W, Huang CZ, Wang J, Zhu HT, Kuriyagawa T, Indentation crack initiation and ductile to brittle transition behavior of fused Silica, AMR 797, 667( 2013). https:// doi. org / 10.4028 / www. scientific. net / AMR. 797.667.
66 Weeks WP, Flores KM, Improving the precision of Vickers indentation measurements in soda-lime glass with increased dwell time, J. Non-Cryst. Solids 605, 122174( 2023). https:// doi. org / 10.1016 / j. jnoncrysol. 2023.122174.
67 Sung Y, Yoshida S, Kato Y, Kurkjian C, Three-dimensional densification measurement of Vickers-indented glass using digital holographic tomography, J. Am. Ceram. Soc. 102, 5866( 2019). https:// doi. org / 10.1111 / jace. 16508.
68 Lacondemine T, Réthoré J, Maire É, Célarié F, Houizot P, Roux-Langlois C, et al., Direct observation of the displacement field and microcracking in a glass by means of X-ray tomography during in situ Vickers indentation experiment, Acta Mater. 179, 424( 2019). https:// doi. org / 10.1016 / j. actamat. 2019.07.053.
69 Arnold T, Boehm G, Eichentopf I-M, Janietz M, Meister J, Schindler A, Plasma jet machining, Vak. Forsch. Prax. 22, 10( 2010). https:// doi. org / 10.1002 / vipr. 201000423.
70 Arnold T, Boehm G, Paetzelt H, New freeform manufacturing chains based on atmospheric plasma jet machining, J. Eur. Opt. Soc.-Rapid Publ. 11, 16002( 2016). https:// doi. org / 10.2971 / jeos. 2016.16002.
71 Arnold T, Böhm G, Paetzelt H, Ultra-precision surface machining with reactive plasma jets, Contrib. Plasma Phys. 54, 145( 2014). https:// doi. org / 10.1002 / ctpp. 201310058.
72 Müller H, Böhm G, Arnold T, in Proceedings of the Sixth European Seminar on Precision Optics Manufacturing, Teisnach, 2019, edited by R. Rascher and C. Schopf( Proceedings Volume 11171, SPIE, 2019), p. 21. https:// doi. org / 10.1117 / 12.2526746.
73 Arnold T, Böhm G, Fechner R, Meister J, Nickel A, Frost F, et al., Ultra-precision surface finishing by ion beam and plasma jet techniques – status and outlook, Nucl. Instrum. Methods Phys. Res. A 616, 147( 2010). https:// doi. org / 10.1016 / j. nima. 2009.11.013.
74 Müller H, Waak T, Birnbaum U, Böhm G, Arnold T, Atmospheric plasma jet processing for figure error correction of an optical element made from S-BSL7, J. Eur. Opt. Soc.- Rapid Publ. 18, 4( 2022). https:// doi. org / 10.1051 / jeos / 2022003.
75 Kazemi F, Boehm G, Arnold T, An investigation on effectiveness of temperature treatment for fluorine-based reactive plasma jet machining of N-BK7 Ò, Plasma Process. Polym. 17( 2020). https:// doi. org / 10.1002 / ppap. 202000016.
76 Hagan JT, Cone cracks around Vickers indentations in fused silica glass, J. Mater. Sci. 14, 462( 1979). https:// doi. org / 10.1007 / BF00589840.
77 Lawn B, Wilshaw R, Indentation fracture: principles and applications, J. Mater. Sci. 10, 1049( 1975). https:// doi. org / 10.1007 / BF00823224.
78 Li C, Ding J, Zhang L, Wu C, Sun L, Lin Q, et al., Densification effects on the fracture in fused silica under Vickers indentation, Ceram. Int. 48, 9330( 2022). https:// doi. org / 10.1016 / j. ceramint. 2021.12.128.
79 Tomić Z, Jukić K, Jarak T, Fabijanić TA, Tonković Z, Phase-field modeling of fused silica cone-crack Vickers indentation, Nanomaterials( Basel) 12( 2022). https:// doi. org / 10.3390 / nano12142356.
80 Michel MD, Serbena FC, Lepienski CM, Effect of temperature on hardness and indentation cracking of fused silica, J. Non-Cryst. Solids 352, 3550( 2006). https:// doi. org / 10.1016 / j. jnoncrysol. 2006.02.113.
81 Suratwala TI, Wong L, Miller PE, Feit MD, Menapace JA, Steele R, et al., Sub-surface mechanical damage distributions during grinding of fused silica, J. Non-Cryst. Solids 352, 5601 – 5617( 2006). https:// doi. org / 10.1016 / j. jnoncrysol. 2006. 09.012.
82 Wong L, Suratwala T, Feit MD, Miller PE, Steele R, The effect of HF / NH4F etching on the morphology of surface fractures on fused silica, J. Non-Cryst. Solids 355, 797( 2009). https:// doi. org / 10.1016 / j. jnoncrysol. 2009.01.037.
83 Konstantinova TG, Andronic MM, Baklykov DA, Stukalova VE, Ezenkova DA, Zikiy EV, et al., Deep multilevel wet etching of fused silica glass microstructures in BOE solution, Sci. Rep. 13, 5228( 2023). https:// doi. org / 10.1038 / s41598- 023-32503-w.
84 Enni K, Sreelakshmy K, Lal R M, Comparative study on the effects of dry and wet etching on surface characteristics of fused silica optics, Opt. Mater. 162, 116809( 2025). https:// doi. org / 10.1016 / j. optmat. 2025.116809.