|  Origin of the Universe and Pre-Big-Bang Models | 
In General 
  > s.a. entropy; kaluza-klein theory;
  quantum cosmology.
  * Possibilities: Examples
    of qualitatively different predictions for the evolution of the universe
    are past-eternal ones (inflationary versions, steady state), bouncing
    or oscillating universes, and cyclic models; These can be described at
    either the classical or the quantum level.
  * Inflation:
    Based on a cosmological phase transition as pre-standard model scenario.
  * Ekpyrotic cosmology: Based on the brane world
    as pre-big bang scenario; > s.a. brane cosmology.
  * Island universe: (The name is
    a reference to Kant's old idea) The universe is initially in a cosmological
    constant sea, then local quantum fluctuations violating the null energy condition
    create islands of matter, some of which might correspond to our observable universe.
  @ Origin of the universe: Misner PR(69);
    Rosen AJP(87)jun;
    Grünbaum PhSc(89)sep,
    Nat(90)apr;
    Lévy-Leblond AJP(90)feb;
    Gott & Li PRD(98)ap/97,
    Barber gq/02 [self-creation];
    news ut(12)feb [Krauss' "universe from nothing"];
    Huggett & Wüthrich PhSc-a1710 [emergence, conceptual];
    > s.a. cosmology references.
  @ Beginning and initial singularity: Narlikar PhSc(92)sep;
    Bogdanov & Bogdanov CQG(01) [!!!];
    Vaas bdw(04)phy [lqg];
    Szydłowski et al PRD(05) [vs bounce, test];
    Grøn EJP(06) [and spatially infinite universe];
    Ashtekar phy/06-conf [in quantum gravity];
    Frampton a0704-book [I, re beginning and end];
    Stenger Philo(06)-a0710 [model];
    Berman IJTP(09) [not there];
    Craps a1001-conf [intro, and AdS/cft correspondence];
    Ashtekar AIP(10)-a1005 [and lqc];
    Fujimoto a1103 [philosophical and mathematical];
    Adler a1107 [cosmogenesis and spatial flatness];
    Brustein & Kupferman HPLS-a1202-conf [the creation according to science];
    Mithani & Vilenkin a1204-proc,
    response Susskind a1204 [on scenarios with no initial singularity];
    Penrose FP(14) [conformal cyclic cosmology];
    > s.a. arrow of time; boundary conditions
      in quantum cosmology; history [entropic creation argument];
      quantum-gravity phenomenology; quantum cosmology;
      singularities.
  @ Island universe: Dutta & Vachaspati PRD(05)ap;
    Piao PRD(05) [and observations];
    > s.a. cosmology [future].
  > Structure formation:
    see early-universe cosmology; inflationary phenomenology
    and scenarios; cosmological perturbations.
  > Pre-big-bang cosmology:
    see cmb anisotropy; loop quantum cosmology;
    string phenomenology.
Models without Singularity > s.a. Bounces;
  Cyclic Models; history of relativistic cosmology;
  lqc models; singularities [avoidance].
  * Emergent universe: A
    non-singular universe that starts expanding from an Einstein static universe.
  * Bouncing models:
    Models in which the universe is expanding from a previous contracting
    phase, without an initial singularity; they can be classical or quantum
    (as in lqc); 2014, they can be considered as possible alternatives to
    inflation, although most models proposed so far have some problems.
  @ General references:
    Kak phy/02 [history in India];
    Garriga & Vilenkin PRD(98) [inflationary recycling];
    Frampton ap/06-conf [dark energy in brane world];
    Frampton 09 [I];
    Lehners et al IJMPD(09)-a0910-GRF,
    Zhang a1102-JoC [phoenix universe];
    Wetterich PDU(13)-a1303;
    Boyle et al PRL(18) [CPT-symmetric antiuniverse];
    Nicolai a2104-GRF [rev, and complexity-based proposal];
    > s.a. cosmological perturbation models; dark matter.
  @ Bounces: Molina-París & Visser PLB(99)gq/98 [Tolman];
    Solomons et al CQG(06)gq/01,
    CQG(06) [Kantowski-Sachs, Bianchi models];
    Peter & Pinto-Neto PRD(02) [evidence against];
    Cartier et al PRD(03)ht;
    Stachowiak & Szydłowski PLB(07)gq/06 [modified Friedmann equation];
    Novello & Perez Bergliaffa PRP(08)-a0802 [rev];
    Falciano et al PRD(08)-a0802;
    Lehners CQG(11)-a1106;
    Maier et al PRD(12)-a1111 [with a cosmological constant];
    Cai et al JCAP(12)-a1206;
    Battefeld & Peter PRP(15)-a1406 [review];
    Barrau & Linsefors JCAP(14)-a1406 [bounce from radiation, inflation and reheating];
    Ferreira & Pavón EPJC(16)-a1509 [thermodynamics];
    Nojiri et al PRD(16)-a1601 [in unimodular f(R) gravity];
    Cheung et al SCpma(19)-a1601 [from string theory];
    Peter & Vitenti MPLA(16)-a1603 [quantum FLRW, simple model];
    Brandenberger & Peter FP(17)-a1603 [rev];
    Ijjas & Steinhardt PRL(16)-a1606 [in Galileon theories];
    Chamseddine & Mukhanov JCAP(17)-a1612 [modified gravity];
    Moriconi & Montani PRD(17)-a1706 [anisotropy, in polymer representation];
    Graham et al PRD(18)-a1801 [from vorticity in compact extra dimensions];
    Ye & Piao a1901;
    Minas et al a1902 [in Finsler-like geometry];
    Klinkhamer & Wang a1904 [with degenerate metrics];
    Barrau a2005;
    Linford a2006,
    BJPS-a2006 [conceptual];
    > s.a. brane-world cosmology; energy conditions;
      friedmann equation; higher-order gravity;
      hořava gravity; relativistic cosmology;
    scalar-tensor thories; supergravity.
  @ Bounces, phenomenology: Lilley et al JCAP(11)-a1104 [observational signatures];
    Xia et al PRL(14) [evidence after BICEP2?];
    Li et al PRD(14)-a1403 [dark matter production];
    > s.a. black-hole types [primordial]; magnetism
      [primordial fields]; perturbations; wormholes.
  @ Cyclic / oscillating: Barrow & Dabrowski MNRAS(95);
    Dadhich & Raychaudhuri MPLA(99)gq;
    Steinhardt & Turok PRD(02)ht/01,
    PRD(02)ht/01,
    NPPS(03)ap/02 [with acceleration and recontraction];
    Khoury et al PRL(04)ht/03;
    Brown et al JCAP(08)-ap/04 [phantom, brane-inspired];
    Rendall CQG(07) [with massive scalar fields];
    Clifton & Barrow PRD(07)gq [unlikely explanations of flatness];
    Frampton MPLA(07)-a0705 [infinite past];
    Mithani & Vilenkin JCAP(12)-a1110 [quantum-mechanically unstable],
    JCAP(14) [from lqc, instability];
    Sahni & Toporensky PRD(12)-a1203 [and cosmological hysteresis];
    Mithani & Vilenkin JCAP(15)-a1407 [stability of oscillating universes];
    Cianfrani et al EPL(16)-a1507 [from lqg];
    Barrow & Ganguly PRD(17)-a1703 [Bianchi IX with radiation and ghost field];
    Barrow & Ganguly IJMPD(17)-a1705-GRF [general, and mixmaster];
    Dąbrowski APPB(17)-a1708 [in alternative theories];
    Pavlović & Sossich a2009 [dynamic properties];
    > s.a. cosmic strings; types of inflation.
  @ Emergent universe: Ellis et al CQG(04)gq/03 [static for t → −∞];
    Ellis & Maartens CQG(04);
    Guendelman & Labraña IJMPD(13)-a1303;
    Guendelman a1306-proc;
    Ali PLB(14)-a1310;
    Khodadi et al PRD(16)-a1512 [in Hořava-Lifshitz f(R) gravity].
  @ Related topics: Senovilla PRL(90),
    PRD(96);
    Chinea at al PRD(92);
    Fakir gq/98;
    Wagh ap/02 [inhomogeneous];
    Fernández-Jambrina GRG(05)gq [non-rotating pfluids];
    Dechant et al PRD(09)-a0809,
    CQG(10)-a1007 [quasi-regular singularity];
    Wetterich PRD(14)-a1404; Hrycyna a2105;
    > s.a. no-boundary quantum cosmology.
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