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Pawel Pieranski – crystallographer of liquids and Alfred-Saupe-prize laureate 2019

References

  • Cladis PE, Kleman M, Pieranski P. New method for decoration of mesomorphic phase of para methoxybenzilidene para betylaniline. Comptes Rendus Hebdomaires Des Seances De l’Academie Des Sciences, Ser B. 1971;273(6):275.
  • Williams C, Pierański P, Cladis PE. Nonsingular S=+ 1 screw disclination lines in nematics. Phys Rev Lett. 1972;29(2):90.
  • Pieranski P, Brochard F, Guyon E. Static and dynamic behavior of a nematic liquid crystal in a magnetic field-part I: static results. J Phys. 1972;33(7):681–689.
  • Pieranski P, Brochard F, Guyon E. Static and dynamic behavior of a nematic liquid crystal in a magnetic field. Part II: dynamics. J Phys. 1973;34(1):35–48.
  • Pieranski P, Dubois-Violette E, Guyon E. Heat convection in liquid crystals heated from above. Phys Rev Lett. 1973;30(16):736.
  • Pieranski P. Guyon E.Transverse effects in nematic flows. Phys Lett A. 1974;49(3):237–238.
  • Adam M, De Gennes PG, Pieranski P. Instabilités de suspensions anisotropes par passage de courant. Journal De Physique Lettres. 1978;39(4):L47–L49.
  • Gauthier-Manuel B, Meyer R, Pieranski P. The sphere rheometer: I quasistatic measurements. J Phys E: Sci Instrum. 1984;17(12):1177–1182.
  • Pieranski P, Guyon E, Keller P. Shear flow induced polarization in ferroelectric smectics C. J Phys. 1975;36(10):1005–1010.
  • Pieranski P, Guyon E, Keller P, et al. Optical study of a chiral smectic C under shear. Mol Cryst Liq Cryst. 1977;38(1):275–301.
  • Petit L, Pieranski P, Guyon E. Direct determination of spontaneous polarization in chiral smectic-C. Comptes Rendus Hebdomaires Des Seances De l’Academie Des Sciences, Ser B. 1977;284(23):535–538.
  • Pieranski P, Strzelecki L, Friedel J. Observation of edge dislocations in ordered polystyrene latexes. J Phys. 1979;40(9):853–859.
  • Pieranski P. Two-dimensional interfacial colloidal crystals. Phys Rev Lett. 1980;45(7):569–572.
  • Pieranski P, Dubois-Violette E, Rothen F, et al. Geometry of Kossel lines in colloidal crystals. J Phys. 1981;42(1):53–60.
  • Pieranski P. Colloidal crystals. Contemp Phys. 1983;24(1):25–73.
  • Pieranski P, Strzelecki LR, Pansu B. Thin colloidal crystals. Phys Rev Lett. 1983;50(12):900–903.
  • Bonissent A, Pieranski P, Pieranski P. Solid-solid phase transitions in a low-dimensionality system. Philos Mag A. 1984;50(1):57–64.
  • Pansu B, Pieranski P, Pieranski P. Structures of thin layers of hard spheres: high pressure limit. J Phys. 1984;45(2):331–339.
  • Pieranski P, Pansu B. Microspectroscopy. Journal De Physique Colloques. 1985;46(C3):C3-281-C3-293.
  • Barbet-Massin R, Pieranski P. Blue phase one: first optical measurements of the order parameter. Journal De Physique Lettres. 1984;45(16):L799–L806.
  • Barbet-Massin R, Cladis PE, Pieranski P. Crystal habit of liquid-crystal blue phase I. Phys Rev A. 1984;30(2):1161–1164.
  • Pieranski P, Cladis PE, Barbet-Massin R. Experimental evidence for a hexagonal blue phase. Journal De Physique Lettres. 1985;46(20):L973–L977.
  • Pieranski P, Barbet-Massin R, Cladis PE. Steps on surfaces of liquid-crystal blue phase I. Phys Rev A. 1985;31(6):3912.
  • Cladis PE, Garel T, Pieranski P. Kossel diagrams show electric-field-induced cubic-tetragonal structural transition in frustrated liquid-crystal blue phases. Phys Rev Lett. 1986;57(22):2841–2844.
  • Pieranski P, Cladis PE. Frustrated liquids: liquid crystal blue phases. Europhys News. 1986;17(9):113–115.
  • Pieranski P, Cladis PE. Field-induced tetragonal blue phase (BP X). Phys Rev A. 1987;35(1):355–364.
  • Jorand M, Pierański P. Brownian motion of screw dislocations in the hexagonal blue phase. J Phys. 1987;48(7):1197–1205.
  • Jérôme B, Pieranski P, Godec V, et al. Determination of the blue phase II structure. J Phys. 1988;49(5):837–844.
  • Heppke G, Jerome B, Kitzerow HS, et al. Electrostriction of BPI and BPII for blue phase systems with negative dielectric anisotropy. J Phys. 1989;50(5):549–562.
  • Heppke G, Jerome B, Kitzerow HS, et al. Electrostriction of the cholesteric blue phases BPI and BPII in mixtures with positive dielectric anisotropy. J Phys. 1989;50(19):2991–2998.
  • Heppke G, Jerome B, Kitzerow HS, et al. Observation of a hexagonal blue phase in systems with negative dielectric anisotropy. Liq Cryst. 1989;5(3):813–828.
  • Jérôme B, Pieranski P. Kossel diagrams of blue phases. Liq Cryst. 1989;5(3):799–812.
  • Jerome B, Pieranski P, Boix M. Bistable anchoring of nematics on SiO films. Europhys Lett. 1988;5(8):693–696.
  • Pieranski P, Jerome B. Adsorption-induced anchoring transitions at nematic-liquid-crystal–crystal interfaces. Phys Rev A. 1989;40(1):317–322.
  • Bechhoefer J, Duvail JL, Masson L, et al. Critical behavior in anchoring transitions of nematic liquid crystals. Phys Rev Lett. 1990;64(16):1911–1914.
  • Pieranski P, Jerome B. Anchoring transitions. Mol Cryst Liq Cryst. 1991;199(1):167–187.
  • Dumoulin H, Pieranski P, Delacroix HE, et al. Compared study of a quenched blue phase by direct transmission electron and atomic force microscopy. Mol Cryst Liq Cryst. 1995;262:221.
  • Meister R, Dumoulin H, Hallé MA, et al. The anchoring of a cholesteric liquid crystal at the free surface. Journal De Physique II. 1996;6(6):827–844.
  • Meister R, Hallé MA, Dumoulin H, et al. Structure of the cholesteric focal conic domains at the free surface. Phys Rev E. 1996;54(4):3771–3782.
  • Even C, Gourbil A, Impéror-Clerc M, et al. AFM, X-ray diffraction and optical microscopy studies of faceted droplets of a thermotropic bicontinuous cubic mesophase. ChemPhysChem. 2002;3(12):1031–1034.
  • Even C, Impéror-Clerc M, Pieranski P. Exploring the facets of “soft crystals” using an atomic force microscope. Eur Phys J E. 2006;20(1):89–98.
  • Kraus I, Pieranski P, Demikhov E, et al. Destruction of a first-order smectic-A→ smectic-C* phase transition by dimensional crossover in free-standing films. Phys Rev E. 1993;48(3):1916–1923.
  • Pieranski P, Beliard L, Tournellec JP, et al. Physics of smectic membranes. Phys A Stat Mech Appli. 1993;194(1–4):364–389.
  • Brazovskaia M, Pieranski P. Self-tuning behavior of vibrating smectic films. Phys Rev Lett. 1998;80(25):5595–5598.
  • Brazovskaia M, Pieranski P. Diabolical points in the resonance spectra of vibrating smectic films. Phys Rev E. 1998;58(4):R4076.
  • Brazovskaia M, Pieranski P. Smectic films and quantum billiards. Liq Cryst. 1998;3318:382–386.
  • Kraus I, Bahr C, Chikina IV, et al. Can one hear structures of smectic films? Phys Rev E. 1998;58(1):610–625.
  • Chevallard C, Gilli JM, Frisch T, et al. “Magic Spiral” submitted to a torque: topological flows driven by ericksen stresses in Sm C films. Mol Cryst Liq Cryst. 1999;328:595–611.
  • Even C, Pieranski P. On” hearing the shape of drums”: an experimental study using vibrating smectic films. Europhys Lett. 1999;47(5):531–537.
  • Even C, Russ S, Repain V, et al. Localizations in fractal drums: an experimental study. Phys Rev Lett. 1999;83(4):726–729.
  • Oswald P, Pieranski P, Picano F, et al. When boundaries dominate: dislocation dynamics in smectic films. Phys Rev Lett. 2002;88(1):015503.
  • Pieranski P. Physics of free-standing lyotropic films. Materials. 2014;7(5):3453–3469.
  • Pieranski P, Sotta P, Rohe D, et al. Devil’s staircase–type faceting of a cubic lyotropic liquid crystal. Phys Rev Lett. 2000;84(11):2409–2412.
  • Pieranski P, Sittler L, Sotta P, et al. Growth and shapes of a cubic lyotropic liquid crystal. Eur Phys J E. 2001;5(3):317–328.
  • Pieranski P, Bouchih M, Ginestet N, et al. Concave and convex shapes of the Pn3m/L1 interface. Eur Phys J E. 2003;12(2):239–254.
  • Plötzing T, Pieranski P. Ratchet effect in faceting. Eur Phys J E. 2004;13(2):179–188.
  • Pieranski P. New phenomena and a new lyotropic phase detected by isoplethal and hygroscopic methods. J Phys – Condens Matter. 2005;17(45):S3333- S3339.
  • Grenier J, Plötzing T, Rohe D, et al. Anisotropic surface melting in lyotropic cubic crystals. Eur Phys J E. 2006;19(2):223–232.
  • Leroy S, Pieranski P. Steps and dislocations in cubic lyotropic crystals. J Phys. 2006;18(28):6453–6468.
  • Pieranski P. Thermopermeation in bicontinuous lyotropic crystals. Liq Cryst. 2009;36(10–11):1049–1069.
  • Latypova L, Góźdź W, Pieranski P. Symmetry, topology and faceting in bicontinuous lyotropic crystals. Eur Phys J E. 2013;36(8):88.
  • Čopar S, Seč S, Aguirre LE, et al. Sensing and tuning microfiber chirality with nematic chirogyral effect. Phys Rev E. 2016;93(3):032703.
  • Godinho MH, Pieranski P, Sotta P. Hygroscopic study of hydroxypropylcellulose. Eur Phys J E. 2016;39(9):89.
  • Fernandes SN, Almeida PL, Monge N, et al. Cellulose nanocrystals: mind the microgap in iridescent cellulose nanocrystal films. Adv Mater. 2017;29(2):1603560.
  • Cabeça R, Godinho MH, Pieranski P. Magnetic tweezers for captive disclination loops. Eur Phys J Spec Top. 2019;227(17):2439–2454.
  • Pieranski P. Physics, mathematics and liquid crystals. Proc SPIE. 2001;4759:209–221.
  • Pieranski P. On a few universal aspects of liquid crystals. In: Bok J, Prost J, Brochard-Wyart F, editors. P. G. De Gennes’ impact on science – volume I: solid state and liquid crystals. Vol. 18. Series on Directions in Condensed Matter Physics. Singapore: World Scientific; 2009. p. 131–158.
  • Pieranski P, Yang B, Burtz LJ, et al. Generation of umbilics by magnets and flows. Liq Cryst. 2013;40(12):1593–1608.
  • Pieranski P. Generation of umbilics by poiseuille flows. Eur Phys J E. 2014;37(4):24.
  • Pieranski P. Dislocations and other topological oddities. C R Phys. 2016;17(3–4):242–263.
  • Pieranski P, Godinho MH, Čopar S. Persistent quasiplanar nematic texture: its properties and topological defects. Phys Rev E. 2016;94(4):042706.
  • Pieranski P, Hulin JP, Godinho MH. Rheotropism of the dowser texture. Eur Phys J E. 2017;40(12):109.
  • Pieranski P, Godinho MH. Flexo-electricity of the dowser texture. Soft Matter. 2019;15(7):1469–1480.
  • Pieranski P. Pierre-Gilles de Gennes PG: beautiful and mysterious liquid crystals. C R Phys. 2019 forthcoming. DOI:10.1016/j.crhy.2019.01.002.
  • Oswald P, Pieranski P. Nematic and cholesteric liquid crystals: concepts and physical properties illustrated by experiments. Boca Raton (FL, USA): CRC press, Taylor&Francis; 2005.
  • Oswald P, Pieranski P. Smectic and columnar liquid crystals: concepts and physical properties illustrated by experiments. Boca Raton (FL, USA): CRC Press, Taylor&Francis; 2006.
  • Pieranski P. Classroom experiments with chiral liquid crystals. In: Kitzerow HS, Bahr C, editors. Chirality in liquid crystals. New York: Springer; 2001. p. 28–66.
  • Saupe A. On molecular structure and physical properties of thermotropic liquid crystals. Mol Cryst Liq Cryst. 1969;7(1):59–74.
  • A picture of a meeting held 1989 at the Wissenschaftskolleg zu Berlin is given in Kitzerow H. Alfred Saupe Prize 2013 Laudatio for Prof. Dr. Gerd Heppke. Liq Cryst Today. 2014;23(1):25–27.