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第76章 对火星轨道变化问题的最后解释 (第10/12页)
ialplaarysubsystem. itisnotclearatthemomentwhythevehpairexhibitsaivecorrelationinenergyexgeand'itivecorrelationinangularmomentumexge.ossiblyexplainthisthroughthegeneralfactthattherearenoseculartermsinplaarysemimajoraxesuptosed-orderperturbationtheories(cf.brouwerboccalettipucacco1998).thismeansthattheplaaryorbitalenergy(whichisdirectlyrelatedtothesemimajoraxisa)mightbemuchlessaffectedbyperturbingplahanistheangularmomentumexge(whichrelatestoe).heheetricitiesofvenusahbedisturbedeasilybyjupiterandsaturn,whichresultsin'itivecorrelationintheangularmomentumexge.oherhand,thesemimajoraxesofvenusaharelesslikelytobedisturbedbythejovianplahustheenergyexgemaybelimitedonlywithinthevehpair,whichresultsiivecorrelationintheexgeoforbitalenergyinthepair. asfortheouterjovianplaarysubsystem,jupiter–saturnanduranus–uomakedynamicalpairs.however,thestrenhoftheircouplingisnotasstrongparedwiththatofthevehpair. 5±5x1010-yriionsofouterplaaryorbits sihejovianplaarymassesaremuchlargerthaerrestrialplaarymasses,wetreatthejovianplaarysystemasanindepeplaarysystemintermsofthestudyofitsdynamicalstability.hence,weaddedacoupleoftrialiionsthatspan±5x1010yr,includingonlytheouterfiveplahefourjovianplaspluspluto).theresultsexhibittherigorousstabilityoftheouterplaarysystemoverthislongtime-span.orbitalfigurations(fig.12),andvariationofetricitiesandinations(fig.13)showthisveryloabilityoftheouterfiveplasinboththetimeandthefrequenains.althoughwedonotshoshere,thetypicalfrequencyoftheorbitaloscillationofplutoaherouterplasisalmoststantduringtheseverylong-termiionperiods,whichisdemonstratediime–frequencymapsonourwebpage. iwoiions,therelativenumericalerrorialenergywas~10?6andthatofthetotalangularmomentumwas~10?10. 5.1resoheune–plutosystem kinoshitanakai(1996)iedtheouterfiveplaaryorbitsover±5.5x109yr.theyfoundthatfourmajorresoweeuneandplutoaremaintainedduringthewholeiionperiod,andthattheresonancesmaybethemaincausesofthestabilityof
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