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Yigal Meir

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652: 30: 220:, explaining the Coulomb oscillations in the measured electric current. In the process he derived the Meir-Wingreen formula for the electric current through interaction system, a now textbook formula. Later on he made numerous contributions to the field of transport in 692: 279:
since 2003. In 2008 he won the Ben Gurion University President Award for Outstanding Scientific Achievement, during the celebrations for the 60th anniversary of the independence of the
264:, associated with slow electrons above the point contact barrier, an observation that has been verified experimentally. In recent years he has extended his research to the field of 712: 453: 198: 697: 229: 437: 206: 702: 260:), in addition to the expected integer steps. This explanation is based on an emergence of a quasi-localized state in the 233: 221: 216:
Meir has published more than 120 papers in refereed journals. Early in his career, he concentrated on transport through
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Iqbal, M. J.; et al. (2013). "Odd and even Kondo effects from emergent localization in quantum point contacts".
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Meir, Yigal; Ned S. Wingreen (1992). "Landauer formula for the current through an interacting electron region".
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Rejec, Tomaz; Yigal Meir (2006). "Magnetic impurity formation in quantum point contacts".
280: 257: 253: 651: 602: 541: 390: 334: 194: 122: 507: 671: 186: 141:(20 November 1957) is the Graham Beck professor of Quantum Science and Technology at 108: 657: 493: 244:. In the latter context he suggested a solution for the long standing puzzle of the 626: 565: 414: 269: 241: 217: 342: 202: 190: 126: 112: 96: 508:"Ben-Gurion University scientist solves longstanding nanoelectronics puzzles" 224:, in particular to the issue of phase transitions in such media, such as the 618: 557: 406: 350: 381: 209:, Beersheba, Israel as a faculty member. He holds a visiting position at 662: 610: 549: 398: 265: 29: 484: 432:(2nd, substantially rev. ed.). Berlin: Springer. p. 170. 304: 645: 593: 523:"Microscopic Origin of the 0.7-Anomaly in Quantum Point Contacts" 430:
Quantum kinetics in transport and optics of semiconductors
305:"Yigal Meir. Professor of Physics, Ben Gurion University" 193:. He held postdoctoral positions at MIT (1989–91), with 693:
Academic staff of Ben-Gurion University of the Negev
118: 102: 88: 58: 48: 36: 20: 248:– the observation of a step in the conductance of 161:. Among his achievements is the derivation of the 252:, around the value of 0.7 2e/h (where e is the 205:. In 1994 he joined the physics department at 240:, in the particular the manifestation of the 8: 452:: CS1 maint: multiple names: authors list ( 650: 316: 314: 28: 17: 592: 483: 428:Jauho, Hartmut Haug, Antti-Pekka (2008). 380: 199:University of California at Santa Barbara 713:Fellows of the American Physical Society 362: 360: 663:Webpage of the Israeli Physical Society 296: 658:List of Publications in Google-Scholar 445: 7: 283:. He served as the president of the 232:in thin films, and to the field of 230:Superconductor Insulator Transition 14: 521:Bauer, F.; et al. (2013). 275:Meir has been a fellow of the 268:, together with his colleague 1: 159:strongly correlated materials 119:Other academic advisors 65:for electronic transport in 343:10.1103/PhysRevLett.68.2512 272:from Princeton University. 69:; Proposed solution of the 729: 698:Tel Aviv University alumni 234:strong correlation effects 228:in two-dimensions and the 226:metal-insulator transition 277:American Physical Society 132: 81: 27: 285:Israeli Physical Society 323:Physical Review Letters 93:Condensed matter theory 703:Theoretical physicists 250:quantum point contacts 171:quantum point contacts 75:quantum point contacts 510:. Nanotechnology Now. 478:(7105). August 2006. 262:quantum point contact 207:Ben Gurion University 181:Meir was educated in 163:Meir-Wingreen Formula 143:Ben Gurion University 63:Meir-Wingreen Formula 211:Princeton University 611:10.1038/nature12491 603:2013Natur.501...79I 550:10.1038/nature12421 542:2013Natur.501...73B 399:10.1038/nature05054 391:2006Natur.442..900R 335:1992PhRvL..68.2512M 307:. Official website. 287:from 2011 to 2014. 183:Tel Aviv University 53:Tel Aviv University 688:Israeli physicists 468:"Nature – Authors" 238:mesoscopic devices 222:disordered systems 165:, and solving the 155:disordered systems 151:mesoscopic physics 145:, specializing in 67:mesoscopic systems 708:Jewish physicists 375:(7105): 900–903. 329:(16): 2512–2515. 136: 135: 83:Scientific career 40:November 20, 1957 720: 654: 649: 648: 646:Official website 631: 630: 596: 576: 570: 569: 527: 518: 512: 511: 504: 498: 497: 487: 464: 458: 457: 451: 443: 425: 419: 418: 384: 382:cond-mat/0609391 364: 355: 354: 318: 309: 308: 301: 201:(1991–94), with 149:; in particular 147:condensed matter 104:Doctoral advisor 32: 18: 728: 727: 723: 722: 721: 719: 718: 717: 668: 667: 644: 643: 640: 635: 634: 587:(7465): 79–83. 578: 577: 573: 525: 520: 519: 515: 506: 505: 501: 485:10.1038/7105xia 466: 465: 461: 444: 440: 427: 426: 422: 366: 365: 358: 320: 319: 312: 303: 302: 298: 293: 281:State of Israel 258:Planck constant 254:electron charge 179: 49:Alma mater 44: 41: 23: 12: 11: 5: 726: 724: 716: 715: 710: 705: 700: 695: 690: 685: 680: 670: 669: 666: 665: 660: 655: 639: 638:External links 636: 633: 632: 571: 536:(7465): 73–8. 513: 499: 459: 439:978-3540735618 438: 420: 356: 310: 295: 294: 292: 289: 178: 175: 134: 133: 130: 129: 120: 116: 115: 106: 100: 99: 90: 86: 85: 79: 78: 60: 59:Known for 56: 55: 50: 46: 45: 42: 38: 34: 33: 25: 24: 21: 13: 10: 9: 6: 4: 3: 2: 725: 714: 711: 709: 706: 704: 701: 699: 696: 694: 691: 689: 686: 684: 683:Living people 681: 679: 676: 675: 673: 664: 661: 659: 656: 653: 647: 642: 641: 637: 628: 624: 620: 616: 612: 608: 604: 600: 595: 590: 586: 582: 575: 572: 567: 563: 559: 555: 551: 547: 543: 539: 535: 531: 524: 517: 514: 509: 503: 500: 495: 491: 486: 481: 477: 473: 469: 463: 460: 455: 449: 441: 435: 431: 424: 421: 416: 412: 408: 404: 400: 396: 392: 388: 383: 378: 374: 370: 363: 361: 357: 352: 348: 344: 340: 336: 332: 328: 324: 317: 315: 311: 306: 300: 297: 290: 288: 286: 282: 278: 273: 271: 267: 263: 259: 255: 251: 247: 243: 239: 235: 231: 227: 223: 219: 214: 212: 208: 204: 200: 197:, and at the 196: 192: 188: 187:Amnon Aharony 184: 176: 174: 172: 168: 164: 160: 156: 152: 148: 144: 140: 131: 128: 124: 121: 117: 114: 110: 109:Amnon Aharony 107: 105: 101: 98: 94: 91: 87: 84: 80: 76: 72: 68: 64: 61: 57: 54: 51: 47: 43:Haifa, Israel 39: 35: 31: 26: 19: 16: 584: 580: 574: 533: 529: 516: 502: 475: 471: 462: 429: 423: 372: 368: 326: 322: 299: 274: 270:Ned Wingreen 242:Kondo effect 218:quantum dots 215: 180: 138: 137: 82: 15: 678:1957 births 246:0.7 anomaly 203:Walter Kohn 195:Patrick Lee 191:Yoseph Imry 167:0.7 anomaly 127:Walter Kohn 123:Patrick Lee 113:Yoseph Imry 71:0.7 anomaly 672:Categories 291:References 256:and h the 169:puzzle in 139:Yigal Meir 97:Biophysics 22:Yigal Meir 594:1307.7167 448:cite book 619:23995683 558:23995681 494:47249253 407:16929294 351:10045416 627:4452563 599:Bibcode 566:4409202 538:Bibcode 415:4406670 387:Bibcode 331:Bibcode 266:biology 625:  617:  581:Nature 564:  556:  530:Nature 492:  472:Nature 436:  413:  405:  369:Nature 349:  177:Career 89:Fields 623:S2CID 589:arXiv 562:S2CID 526:(PDF) 490:S2CID 411:S2CID 377:arXiv 615:PMID 554:PMID 454:link 434:ISBN 403:PMID 347:PMID 189:and 157:and 37:Born 607:doi 585:501 546:doi 534:501 480:doi 476:442 395:doi 373:442 339:doi 236:in 73:in 674:: 621:. 613:. 605:. 597:. 583:. 560:. 552:. 544:. 532:. 528:. 488:. 474:. 470:. 450:}} 446:{{ 409:. 401:. 393:. 385:. 371:. 359:^ 345:. 337:. 327:68 325:. 313:^ 213:. 173:. 153:, 125:, 111:, 95:, 629:. 609:: 601:: 591:: 568:. 548:: 540:: 496:. 482:: 456:) 442:. 417:. 397:: 389:: 379:: 353:. 341:: 333:: 77:.

Index


Tel Aviv University
Meir-Wingreen Formula
mesoscopic systems
0.7 anomaly
quantum point contacts
Condensed matter theory
Biophysics
Doctoral advisor
Amnon Aharony
Yoseph Imry
Patrick Lee
Walter Kohn
Ben Gurion University
condensed matter
mesoscopic physics
disordered systems
strongly correlated materials
Meir-Wingreen Formula
0.7 anomaly
quantum point contacts
Tel Aviv University
Amnon Aharony
Yoseph Imry
Patrick Lee
University of California at Santa Barbara
Walter Kohn
Ben Gurion University
Princeton University
quantum dots

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