Example: tourism industry

Superconducting Qubits: A Short Review

SuperconductingQubits:A , y, andJ. yDepartment of AppliedPhysics,YaleUniversity, NewHaven,CT06520 Department of Physics,University of California,Santa Barbara,CA93106 October 11, theJosephsontunneljunction,theonlynon-di ssipative, stronglynon-linearcircuitelement availableat low as spinsor atoms,theytendto be wellcoupledto othercircuits,which make themappeallingfromthepoint of , newdesignsof supercon-ductingqubitsbasedonmulti-junct ioncircuitshave solvedtheproblemof thisreviewhow qubitdecoherenceis a ectedby theintrinsicnoiseof thejunctionandwhatcanbe doneto improve implementinga quantumcomputer.

Superconducting junctions and wires are fabricated using techniques borrowed from conventional integrated circuits3. Quantum circuits are typically made on silicon wafers using optical or electron-beam lithography and thin lm deposi-tion. They present themselves as a set of micron-size or sub-micron-size circuit

Tags:

  Review, Short, Superconducting, Qubits, Superconducting qubits, A short review

Information

Domain:

Source:

Link to this page:

Please notify us if you found a problem with this document:

Other abuse

Advertisement

Transcription of Superconducting Qubits: A Short Review

1 SuperconductingQubits:A , y, andJ. yDepartment of AppliedPhysics,YaleUniversity, NewHaven,CT06520 Department of Physics,University of California,Santa Barbara,CA93106 October 11, theJosephsontunneljunction,theonlynon-di ssipative, stronglynon-linearcircuitelement availableat low as spinsor atoms,theytendto be wellcoupledto othercircuits,which make themappeallingfromthepoint of , newdesignsof supercon-ductingqubitsbasedonmulti-junct ioncircuitshave solvedtheproblemof thisreviewhow qubitdecoherenceis a ectedby theintrinsicnoiseof thejunctionandwhatcanbe doneto improve implementinga quantumcomputer.

2 32 Basicfeaturesof dissipation:superconductivity .. noise:low temperature.. ,non-dissipative elements:tunneljunctions.. quantumintegratedcircuits.. macroscopicquantummechanics..73 .. thevacuumimpedance:a usefulfeature,nota beingmacroscopic..914 equation.. theparameterdescribingtheJosephsonnon-li nearinductance..125 thehamiltonian.. theparametersof thehamiltonian..136 Why threebasictypes of Josephsonqubits? pairbox .. versussensitivity to noisein controlparameters.. versussensitivity to intrinsicnoise.

3 227 Qubitrelaxationanddecoherence228 Readoutof thereadoutproblem.. andgeneralstrategies.. :tunnelingreadoutwitha DC-SQUIDon-chipam-pli .. withnon-linearinductive readout:the\Quantro-nium"circuit.. uxqubitwithbuilt-inreadout.. readoutschemes.. Couplingsuperconductingqubits3110 Cancoherencebe improvedwithbettermaterials?3211 Concludingremarksandperspectives33A Quantumcircuittheory34B Eigenenergiesandeigenfunctionsof theCooper pairbox36C Relaxationanddecoherenceratesfora nitionof therates.. implementinga quantumcomputerThetheoryof informationhasbeenrevolutionizedby thediscoverythatquan-tumalgorithmscanrun exponentiallyfasterthantheirclassicalcou nterparts,andby theinventionof quantumerror-correctionprotocols[1].

4 Thesefun-damentalbreakthroughshave leadscientistsandengineersto imaginebuildingentirelynovel types of ,theconstructionof acomputerexploitingquantum{ ratherthanclassical{ principlesrepresents aformidablescienti gatesto performquantumcomputation,theymustatthes ametimebe completelydecoupledfromexternalin uences,exceptduringthewrite,controlandre adoutphaseswheninformationmust ow freelyin andoutof culty does notexistfortheclassicalbitsof anordinarycomputer,which each follow stronglyirreversibledynamicsthatdampthen oiseof quantumcomputerhave beenbasedonqubitsconstructedfrommicrosco picdegreesof freedom:spinof eitherelectronsor nuclei,transitiondipolesof eitheratomsor ionsin freedomarenaturallyverywellisolatedfromt heirenvironment, andhencedecohereveryslowly.}}

5 Themainchallengeof theseimplementationsis enhancingtheinter-qubitcouplingto thelevel ,we willdiscussa radicallydi erent experimentalapproachbasedon\quantuminteg ratedcircuits."Here,qubitsareconstructed fromcol-lectiveelectrodynamicmodesof macroscopicelectricalelements,ratherthan microscopicdegreesof thisapproach is thatthesequbitshave intrinsicallylargeelectromagneticcross-s ections,which impliestheymay be easilycoupledtogetherin complextopologiesviasimplelinearelectric alelements like capacitors,inductors, ,strongcouplingalsopresents a relatedchallenge.

6 Is it possibleto isolatetheseelectro-dynamicqubitsfromamb ient parasiticnoisewhileretaininge cient communi-cationchannelsforthewrite,contro l,andreadoperations?Themainpurposeof thisarticleis to reviewtheconsiderableprogressthathasbeen madein thepastfewyearstowardsthisgoal,andto explainhow newideasaboutmethod-ologyandmaterialsare likelyto improve coherenceto ,we mustwarnthereaderthatthisreviewisatypica lin thatit is neitherhistoricalnorexhaustive. Someimportant workshave amplyciteworkby ourown,attheriskof irritatingthereader,butwe wantedtobaseourspeculationsonexperiments whosedetailswe have on3purposenarrowed ourfocus.

7 We adoptthepoint of viewof anengineertryingtodeterminethebeststrate gyforbuildinga reliablemachinegiven obviouslyrunstheriskof presentinga biasedandevenincorrectaccount of recent scienti cresults,sincetheoptimizationof a complexsystemis always anintricateprocesswithbothhiddenpassagew ays hope neverthelessthatthefollowingsectionswill at leaststimulatediscussionsonhow to harnessthephysicsof quantumintegratedcircuitsinto dissipation:superconductivityFor anintegratedcircuitto behave quantummechanically, the rstrequirementis theabsenceof cally, allmetallicpartsneedto bemadeoutof a materialthathaszeroresistanceatthequbito peratingtem-peratureandat thequbittransitionfrequency.

8 Thisis essentialin orderforelectronicsignalsto be carriedfromonepartof thechipto anotherwithoutenergyloss{ a necessary(butnotsu cient) temperaturesuperconductorssuch as aluminiumorniobiumareidealforthistask[2] .For thisreason,quantumintegratedcircuitimple mentationshave beennicknamed\superconductingqubits" noise:low temperatureThedegreesof freedomof thequantumintegratedcircuitmustbe cooledtotemperatureswherethetypicalenerg ykTof thermal uctuationsis much lessthattheenergyquantum~!01associatedwi ththetransitionbetweenthestatesjqubit=0> andjqubit=1>.}

9 For reasonswhich willbecomeclearin subsequentsections,thisfrequencyforsuper conductingqubitsis in the5-20 GHzrangeandtherefore,theoperatingtempera turetemperatureTmustbe around20mK(Recallthat1 K correspondsto about20 GHz).Thesetemperaturesmaybe readilyobtainedby coolingthechipwitha ,the\electromagnetictemperature"of thewiresof thecontrolandreadoutportsconnectedto thechipmustalsobe cooledto theselow temperatures,which requirescarefulelectromagnetic low [3] andrequirements [4] forultra-low noise lteringhave beenknownforabout20 ~!

10 01and~!01 ,where is theenergygap1In principle,othercondensedphasesof electrons,such as high-Tcsuperconductivity orthequantumHalle ect,bothintegerandfractional,arepossible andwouldalsoleadtoquantumintegratedcircu itsof thegeneraltype donotpursuethissubjectfurtherthanthisnot e,however,becausedissipationin thesenewphasesis, by far,notas wellunderstood as in thesuperconductingmaterial,onemustusesup erconductingmaterialswitha ,non-dissipative elements:tunneljunctionsQuantumsignalpro cessingcannotbe quantumcircuits,however,thenon-linearele ments mustobey theadditionalrequirement of like PINdiodesorCMOS transistorsarethus forbidden,even if theycouldbe operatedat onlyoneelectronicelement thatis bothnon-linearandnon-dissipativeatarbitr arilylow temperature:thesuperconductingtunneljunc tion2(alsoknownas a Josephsontunneljunction[5]).


Related search queries