...ckground or large-scale structure. The search for evidence of these topological defects is an ongoing area of research.
🧵 #Cosmology #SpaceFacts #TopologicalDefects #CosmicStrings #DomainWalls #PhaseTransitions #EarlyUniverse #CosmicMicrowaveBackground #LargeScaleStructure #HypotheticalObject
🧵 #Cosmology #SpaceFacts #TopologicalDefects #CosmicStrings #DomainWalls #PhaseTransitions #EarlyUniverse #CosmicMicrowaveBackground #LargeScaleStructure #HypotheticalObject
December 3, 2024 at 10:00 AM
...ckground or large-scale structure. The search for evidence of these topological defects is an ongoing area of research.
🧵 #Cosmology #SpaceFacts #TopologicalDefects #CosmicStrings #DomainWalls #PhaseTransitions #EarlyUniverse #CosmicMicrowaveBackground #LargeScaleStructure #HypotheticalObject
🧵 #Cosmology #SpaceFacts #TopologicalDefects #CosmicStrings #DomainWalls #PhaseTransitions #EarlyUniverse #CosmicMicrowaveBackground #LargeScaleStructure #HypotheticalObject
Petříček and Henriques: Unity gives strength: combining Bertaut's and Belov's concepts and the formalism of aperiodic crystals to solve magnetic structures of unprecedented complexity ##PhaseTransitions... ##IUCrhttps://journals.iucr.org/paper?S2052252524010182
Unity gives strength: combining Bertaut's and Belov's concepts and the formalism of aperiodic crystals to solve magnetic structures of unprecedented complexity
We draw attention to the exceptional work of Geers et al. [(2024). IUCrJ, 11, https://doi.org/10.1107/S2052252524008583] on the analysis of magnetic phases, in which challenging magnetic structures are determined by a combination of modern computational methods and a connection between nuclear modulation and the ordering of magnetic moments is shown.
journals.iucr.org
October 30, 2024 at 1:01 AM
Petříček and Henriques: Unity gives strength: combining Bertaut's and Belov's concepts and the formalism of aperiodic crystals to solve magnetic structures of unprecedented complexity ##PhaseTransitions... ##IUCrhttps://journals.iucr.org/paper?S2052252524010182
#ExperimentalPhysics & #TheoreticalPhysics researchers discover that magnetic whirls crystallize in two dimensions - Cooperation w/in #TopDyn paves way for investigation of 2D phases & #PhaseTransitions https://www.uni-mainz.de/presse/aktuell/12071_ENG_HTML.php @uni_kl...
December 12, 2024 at 3:42 PM
#ExperimentalPhysics & #TheoreticalPhysics researchers discover that magnetic whirls crystallize in two dimensions - Cooperation w/in #TopDyn paves way for investigation of 2D phases & #PhaseTransitions https://www.uni-mainz.de/presse/aktuell/12071_ENG_HTML.php @uni_kl...
Vibrations at the Atomic Scale Expose Mysterious Phase Transitions #Science #Physics #CondensedMatterPhysics #PhaseTransitions #AtomicVibrations #CondensedMatter
Vibrations at the Atomic Scale Expose Mysterious Phase Transitions
Scientists have uncovered a new way to explore the complex transformations of 2D nanomaterials. By using nanoscale vibrating membranes, they observed how mechanical and magnetic properties shift at extreme...
purescience.news
March 18, 2025 at 3:00 PM
Vibrations at the Atomic Scale Expose Mysterious Phase Transitions #Science #Physics #CondensedMatterPhysics #PhaseTransitions #AtomicVibrations #CondensedMatter
...erse's fundamental properties. Understanding these phase transitions is a major focus of current cosmological research.
🌡️ #Cosmology #SpaceFacts #PhaseTransitions #EarlyUniverse #EnergyDensity #FundamentalProperties #SymmetryBreaking #CosmologyResearch
🌡️ #Cosmology #SpaceFacts #PhaseTransitions #EarlyUniverse #EnergyDensity #FundamentalProperties #SymmetryBreaking #CosmologyResearch
November 24, 2024 at 8:00 PM
...erse's fundamental properties. Understanding these phase transitions is a major focus of current cosmological research.
🌡️ #Cosmology #SpaceFacts #PhaseTransitions #EarlyUniverse #EnergyDensity #FundamentalProperties #SymmetryBreaking #CosmologyResearch
🌡️ #Cosmology #SpaceFacts #PhaseTransitions #EarlyUniverse #EnergyDensity #FundamentalProperties #SymmetryBreaking #CosmologyResearch
When do #particles become orderly #information? When do #phasetransitions occur in #systems?
“The disorder converges to a universal form,” wrote Kevin Hartnett. “At the precise moment when a random system seems most chaotic, exquisite geometric order peers through.” www.linkedin.com/pulse/counte...
“The disorder converges to a universal form,” wrote Kevin Hartnett. “At the precise moment when a random system seems most chaotic, exquisite geometric order peers through.” www.linkedin.com/pulse/counte...
The Counterintuitive Power of Randomness
By Jordana Cepelewicz Each week Quanta Magazine explains one of the most important ideas driving modern research. This week, senior math writer Jordana Cepelewicz unpacks how randomness has become one...
www.linkedin.com
June 30, 2025 at 5:51 PM
When do #particles become orderly #information? When do #phasetransitions occur in #systems?
“The disorder converges to a universal form,” wrote Kevin Hartnett. “At the precise moment when a random system seems most chaotic, exquisite geometric order peers through.” www.linkedin.com/pulse/counte...
“The disorder converges to a universal form,” wrote Kevin Hartnett. “At the precise moment when a random system seems most chaotic, exquisite geometric order peers through.” www.linkedin.com/pulse/counte...
New paper online:
Real-time observation of topological defect dynamics mediating two-dimensional skyrmion lattice melting.
#PhaseTransitions
#Spintronics
#Skyrmions
#KerrMicroscopy
www.nature.com/articles/s41...
Real-time observation of topological defect dynamics mediating two-dimensional skyrmion lattice melting.
#PhaseTransitions
#Spintronics
#Skyrmions
#KerrMicroscopy
www.nature.com/articles/s41...
Real-time observation of topological defect dynamics mediating two-dimensional skyrmion lattice melting - Nature Nanotechnology
Dynamic Kerr microscopy enables the tracking of the two-step melting of a magnetic skyrmion lattice from a two-dimensional solid through an intermediate hexatic regime to an isotropic liquid and provi...
www.nature.com
August 4, 2025 at 9:49 AM
New paper online:
Real-time observation of topological defect dynamics mediating two-dimensional skyrmion lattice melting.
#PhaseTransitions
#Spintronics
#Skyrmions
#KerrMicroscopy
www.nature.com/articles/s41...
Real-time observation of topological defect dynamics mediating two-dimensional skyrmion lattice melting.
#PhaseTransitions
#Spintronics
#Skyrmions
#KerrMicroscopy
www.nature.com/articles/s41...
...kground or large-scale structure. The search for evidence of these topological defects is an ongoing area of research.
🧵 #Cosmology #SpaceFacts #TopologicalDefects #CosmicStrings #DomainWalls #PhaseTransitions #EarlyUniverse #CosmicMicrowaveBackground #LargeScaleStructure
🧵 #Cosmology #SpaceFacts #TopologicalDefects #CosmicStrings #DomainWalls #PhaseTransitions #EarlyUniverse #CosmicMicrowaveBackground #LargeScaleStructure
November 24, 2024 at 10:00 PM
...kground or large-scale structure. The search for evidence of these topological defects is an ongoing area of research.
🧵 #Cosmology #SpaceFacts #TopologicalDefects #CosmicStrings #DomainWalls #PhaseTransitions #EarlyUniverse #CosmicMicrowaveBackground #LargeScaleStructure
🧵 #Cosmology #SpaceFacts #TopologicalDefects #CosmicStrings #DomainWalls #PhaseTransitions #EarlyUniverse #CosmicMicrowaveBackground #LargeScaleStructure
#StatisticalPhysics #PhaseTransitions
July 13, 2025 at 6:15 PM
#StatisticalPhysics #PhaseTransitions
"Curious about how quantum phase transitions could revolutionize materials? A novel method reveals insights into quantum critical points, reshaping our understanding. What future tech could benefit from this? #QuantumPhysics #Innovation #PhaseTransitions" LINK
October 1, 2025 at 5:33 PM
"Curious about how quantum phase transitions could revolutionize materials? A novel method reveals insights into quantum critical points, reshaping our understanding. What future tech could benefit from this? #QuantumPhysics #Innovation #PhaseTransitions" LINK
New paper online:
Measuring age-dependent viscoelasticity of organelles, cells, and organisms with time-shared optical tweezer microrheology.
www.nature.com/articles/s41...
#Aging #Phasetransitions #Nanorheometer
Measuring age-dependent viscoelasticity of organelles, cells, and organisms with time-shared optical tweezer microrheology.
www.nature.com/articles/s41...
#Aging #Phasetransitions #Nanorheometer
Measuring age-dependent viscoelasticity of organelles, cells and organisms with time-shared optical tweezer microrheology - Nature Nanotechnology
An optical-tweezer-based nanorheometer is developed to quantify the viscoelasticity of biomolecular condensates and intracellular compartments in vivo during aging and mutations that cause nuclear env...
www.nature.com
January 6, 2025 at 8:20 AM
New paper online:
Measuring age-dependent viscoelasticity of organelles, cells, and organisms with time-shared optical tweezer microrheology.
www.nature.com/articles/s41...
#Aging #Phasetransitions #Nanorheometer
Measuring age-dependent viscoelasticity of organelles, cells, and organisms with time-shared optical tweezer microrheology.
www.nature.com/articles/s41...
#Aging #Phasetransitions #Nanorheometer
Trotsenko and Talanov: Understanding secondary order parameters in perovskites with tilted octahedra ##Perovskites##OctahedralTilting##PhaseTransitions... ##IUCrhttps://journals.iucr.org/paper?S1600576724009397
Understanding secondary order parameters in perovskites with tilted octahedra
A symmetry guide for the secondary structural degrees of freedom and related physical properties generated by tilts of BX6 octahedra in perovskites is proposed.
journals.iucr.org
October 17, 2024 at 12:00 AM
Trotsenko and Talanov: Understanding secondary order parameters in perovskites with tilted octahedra ##Perovskites##OctahedralTilting##PhaseTransitions... ##IUCrhttps://journals.iucr.org/paper?S1600576724009397
December 16, 2024 at 2:17 PM
Roman Gajda et al.: Incommensurately modulated structure of Zn4Si2O7(OH)2·H2O at high pressure ##Hemimorphite##PhaseTransitions##IncommensuratelyModulatedStructures... ##IUCrhttps://journals.iucr.org/paper?S2052252524011060
Incommensurately modulated structure of Zn4Si2O7(OH)2·H2O at high pressure
Refinement of the hemimorphite crystal structure using single-crystal synchrotron X-ray diffraction data collected at high pressure revealed a structural phase transition into an incommensurately modulated structure, accompanied by the appearance of satellite reflections.
journals.iucr.org
November 29, 2024 at 1:01 AM
Roman Gajda et al.: Incommensurately modulated structure of Zn4Si2O7(OH)2·H2O at high pressure ##Hemimorphite##PhaseTransitions##IncommensuratelyModulatedStructures... ##IUCrhttps://journals.iucr.org/paper?S2052252524011060
Madeleine Geers et al.: Tuning structural modulation and magnetic properties in metal–organic coordination polymers [CH3NH3]CoxNi1−x(HCOO)3 ##PhaseTransitions##IncommensurateStructures##SolidSolutions... ##IUCrhttps://journals.iucr.org/paper?S2052252524008583
Tuning structural modulation and magnetic properties in metal–organic coordination polymers [CH3NH3]CoxNi1−x(HCOO)3
We show that the modulated phase transitions in solid solutions of [CH3NH3]CoxNi1−x(HCOO)3, with x = 0.25 (1), x = 0.50 (2) and x = 0.75 (3), can be tuned by the metal ratio, which offers the opportunity to consciously build molecular compounds with adjustable properties by doping metal sites.
journals.iucr.org
September 25, 2024 at 12:00 AM
Madeleine Geers et al.: Tuning structural modulation and magnetic properties in metal–organic coordination polymers [CH3NH3]CoxNi1−x(HCOO)3 ##PhaseTransitions##IncommensurateStructures##SolidSolutions... ##IUCrhttps://journals.iucr.org/paper?S2052252524008583
Gravitational Waves from First-Order Phase Transitions Assisted by
Temperature-Enhanced Scatterings
Arnab Chaudhuri
Paper
Details
#GravitationalWaves #PhaseTransitions #HighEnergyPhysics
Temperature-Enhanced Scatterings
Arnab Chaudhuri
Paper
Details
#GravitationalWaves #PhaseTransitions #HighEnergyPhysics
July 19, 2025 at 11:51 PM
Gravitational Waves from First-Order Phase Transitions Assisted by
Temperature-Enhanced Scatterings
Arnab Chaudhuri
Paper
Details
#GravitationalWaves #PhaseTransitions #HighEnergyPhysics
Temperature-Enhanced Scatterings
Arnab Chaudhuri
Paper
Details
#GravitationalWaves #PhaseTransitions #HighEnergyPhysics
Róża Jastrzębska et al.: Structure–property relationship of a complex photoluminescent arylacetylide-gold(I) compound. I: a pressure-induced phase transformation caught in the act ##PhaseTransitions@UniWarszawski...##IUCrhttps://journals.iucr.org/paper?S2052252524007681
Structure–property relationship of a complex photoluminescent arylacetylide-gold(I) compound. I: a pressure-induced phase transformation caught in the act
A pressure-induced triclinic-to-monoclinic phase transition has been caught `in the act' in the course of a wider series of high-pressure synchrotron diffraction experiments conducted on a moderately photoluminescent gold(I) compound. Our experiments illustrate how conducting a fast series of experiments, enabled by modern equipment at synchrotrons, can lead to an inaccurate estimation of the actual pressure of a phase transformation.
journals.iucr.org
August 24, 2024 at 12:01 AM
Róża Jastrzębska et al.: Structure–property relationship of a complex photoluminescent arylacetylide-gold(I) compound. I: a pressure-induced phase transformation caught in the act ##PhaseTransitions@UniWarszawski...##IUCrhttps://journals.iucr.org/paper?S2052252524007681
Our article, Nearest neighbor permutation entropy detects phase transitions in complex high-pressure systems, accepted in Scientific Reports, develops a robust and accurate method for detecting phase transitions using spectrophotometric data
arxiv.org/abs/2506.06516 #PhaseTransitions #ComplexSystems
arxiv.org/abs/2506.06516 #PhaseTransitions #ComplexSystems
June 16, 2025 at 11:05 PM
Our article, Nearest neighbor permutation entropy detects phase transitions in complex high-pressure systems, accepted in Scientific Reports, develops a robust and accurate method for detecting phase transitions using spectrophotometric data
arxiv.org/abs/2506.06516 #PhaseTransitions #ComplexSystems
arxiv.org/abs/2506.06516 #PhaseTransitions #ComplexSystems
Nele N. Striker et al.: Phase behavior of silica-PNIPAm nanogels under high hydrostatic pressure ##PhaseTransitions##XPCS##Nanogels... ##IUCrhttps://journals.iucr.org/paper?S1600576725003188
Phase behavior of silica-PNIPAm nanogels under high hydrostatic pressure
The effect of hydrostatic pressure on the structure and dynamics of concentrated silica-PNIPAm (poly-N-isopropylacrylamide) nanogels reveals characteristics similar to those found in temperature-induced phase transitions. However, significant aging is seen in glass and gel samples, which is absent in the liquid state.
journals.iucr.org
May 13, 2025 at 12:00 AM
Nele N. Striker et al.: Phase behavior of silica-PNIPAm nanogels under high hydrostatic pressure ##PhaseTransitions##XPCS##Nanogels... ##IUCrhttps://journals.iucr.org/paper?S1600576725003188