Matches in SemOpenAlex for { <https://semopenalex.org/work/W3208552185> ?p ?o ?g. }
- W3208552185 abstract "Repulsive soft-core atomic systems may undergo clustering if their density is high enough that core overlap is unavoidable. In one-dimensional bosonic quantum systems, it has been shown that this instability triggers a transition from a Luttinger liquid to various cluster Luttinger liquids. Here, we focus on the Luttinger liquid regime and theoretically study the evolution of key observables related to density fluctuations, which manifest a striking dependence on density. We tune the interaction so that the low-density regime corresponds to a Tonks-Girardeau gas and show that as the density is increased the system departs more and more from Tonks-Girardeau behavior, displaying a much larger compressibility as well as rotonic excitations that finally drive the clustering transition. We compare various theoretical approaches, which are accurate in different regimes. Using quantum Monte Carlo methods and analytic continuation as a benchmark, we investigate the regime of validity of the mean-field Bogoliubov and the real-time multiconfiguration time-dependent Hartree-Fock approaches. Part of the behavior that we describe should be observable in ultracold Rydberg-dressed gases, provided that system losses are prevented." @default.
- W3208552185 created "2021-11-08" @default.
- W3208552185 creator A5000900349 @default.
- W3208552185 creator A5009579360 @default.
- W3208552185 creator A5016355927 @default.
- W3208552185 creator A5038559496 @default.
- W3208552185 creator A5075242038 @default.
- W3208552185 date "2021-11-01" @default.
- W3208552185 modified "2023-10-18" @default.
- W3208552185 title "Evolution of static and dynamical density correlations of one-dimensional soft-core bosons from the Tonks-Girardeau limit to a clustering fluid" @default.
- W3208552185 cites W1501304262 @default.
- W3208552185 cites W1542921455 @default.
- W3208552185 cites W1601177872 @default.
- W3208552185 cites W1934097334 @default.
- W3208552185 cites W1938944616 @default.
- W3208552185 cites W1965644213 @default.
- W3208552185 cites W1970386941 @default.
- W3208552185 cites W1977012752 @default.
- W3208552185 cites W1988869079 @default.
- W3208552185 cites W1988996307 @default.
- W3208552185 cites W1993136926 @default.
- W3208552185 cites W1993326632 @default.
- W3208552185 cites W1994345413 @default.
- W3208552185 cites W2001338666 @default.
- W3208552185 cites W2013191448 @default.
- W3208552185 cites W2014049935 @default.
- W3208552185 cites W2019585341 @default.
- W3208552185 cites W2023710148 @default.
- W3208552185 cites W2031080851 @default.
- W3208552185 cites W2033330070 @default.
- W3208552185 cites W2034731189 @default.
- W3208552185 cites W2035034575 @default.
- W3208552185 cites W2036170861 @default.
- W3208552185 cites W2042851256 @default.
- W3208552185 cites W2045649013 @default.
- W3208552185 cites W2055563681 @default.
- W3208552185 cites W2060953054 @default.
- W3208552185 cites W2065026393 @default.
- W3208552185 cites W2069586592 @default.
- W3208552185 cites W2074168445 @default.
- W3208552185 cites W2077393457 @default.
- W3208552185 cites W2101936997 @default.
- W3208552185 cites W2114073402 @default.
- W3208552185 cites W2115513843 @default.
- W3208552185 cites W2229412483 @default.
- W3208552185 cites W2279397426 @default.
- W3208552185 cites W2299768518 @default.
- W3208552185 cites W2317914249 @default.
- W3208552185 cites W2327340940 @default.
- W3208552185 cites W2341583979 @default.
- W3208552185 cites W2407665765 @default.
- W3208552185 cites W2511809805 @default.
- W3208552185 cites W2524190894 @default.
- W3208552185 cites W2559373276 @default.
- W3208552185 cites W2618465568 @default.
- W3208552185 cites W2741062831 @default.
- W3208552185 cites W2890243809 @default.
- W3208552185 cites W3005983610 @default.
- W3208552185 cites W3006897634 @default.
- W3208552185 cites W3009532492 @default.
- W3208552185 cites W3046559081 @default.
- W3208552185 cites W3094665556 @default.
- W3208552185 cites W3101671493 @default.
- W3208552185 cites W3104535499 @default.
- W3208552185 cites W3105178678 @default.
- W3208552185 cites W3105318338 @default.
- W3208552185 cites W3106200227 @default.
- W3208552185 cites W3162324712 @default.
- W3208552185 cites W3165685403 @default.
- W3208552185 doi "https://doi.org/10.1103/physreva.104.053301" @default.
- W3208552185 hasPublicationYear "2021" @default.
- W3208552185 type Work @default.
- W3208552185 sameAs 3208552185 @default.
- W3208552185 citedByCount "1" @default.
- W3208552185 countsByYear W32085521852023 @default.
- W3208552185 crossrefType "journal-article" @default.
- W3208552185 hasAuthorship W3208552185A5000900349 @default.
- W3208552185 hasAuthorship W3208552185A5009579360 @default.
- W3208552185 hasAuthorship W3208552185A5016355927 @default.
- W3208552185 hasAuthorship W3208552185A5038559496 @default.
- W3208552185 hasAuthorship W3208552185A5075242038 @default.
- W3208552185 hasBestOaLocation W32085521852 @default.
- W3208552185 hasConcept C105795698 @default.
- W3208552185 hasConcept C121332964 @default.
- W3208552185 hasConcept C121864883 @default.
- W3208552185 hasConcept C145148216 @default.
- W3208552185 hasConcept C145196801 @default.
- W3208552185 hasConcept C16016025 @default.
- W3208552185 hasConcept C19499675 @default.
- W3208552185 hasConcept C197334999 @default.
- W3208552185 hasConcept C198291218 @default.
- W3208552185 hasConcept C207821765 @default.
- W3208552185 hasConcept C32848918 @default.
- W3208552185 hasConcept C33923547 @default.
- W3208552185 hasConcept C62520636 @default.
- W3208552185 hasConcept C70747811 @default.
- W3208552185 hasConcept C79118098 @default.
- W3208552185 hasConcept C84114770 @default.
- W3208552185 hasConceptScore W3208552185C105795698 @default.
- W3208552185 hasConceptScore W3208552185C121332964 @default.