000 | 02022nlm0a2200361 4500 | ||
---|---|---|---|
001 | 637156 | ||
005 | 20231030040200.0 | ||
029 | 1 | 0 |
_aUS _bWO2009099972 _cPat. _dIPC H01 L 39/24 _dEPO H05 K 9/0077 _dECLA H05 K 9/00 M2B |
035 | _a(RuTPU)RU\TPU\network\1253 | ||
035 | _aRU\TPU\network\1176 | ||
039 | 0 |
_aUS _bPCT/US2009/032744 _c20080131 |
|
090 | _a637156 | ||
100 | _a20140523j20090813k y0engy50 ba | ||
101 | 0 | _aeng | |
102 | _aUS | ||
105 | _aa k 000zy | ||
135 | _adrcn ---uucaa | ||
181 | 0 | _ai | |
182 | 0 | _ab | |
200 | 1 |
_aMagnetic vacuum systems and devices for use with superconducting-based computing systems _fG. Lamont, J. C. Petroff, S. V. Uchaykin |
|
203 |
_aText _celectronic |
||
300 | _aTitle screen | ||
330 | _aMagnetic shields and magnetic shielding systems are described. The excessive spatial demands of known mu-metal/cryoperm and superconducting shielding systems are reduced by a new multi-piece shield construction approach. A complete magnetic shielding system for use with superconducting-based computing systems, such as superconducting quantum computing systems, is also described. This complete system may include mu-metal/cryoperm shields and superconducting shields using either compensatory magnetic fields, expulsion by temperature gradients, or a combination of the two. | ||
610 | 1 | _aтруды учёных ТПУ | |
610 | 1 | _aэлектронный ресурс | |
610 | 1 | _aпатенты | |
700 | 1 |
_aLamont _bG. _gGordon |
|
701 | 1 |
_aPetroff _bJ. C. _gJacob Craig |
|
701 | 1 |
_aUchaykin _bS. V. _cspecialist in the field of non-destructive testing _cEngineer of Tomsk Polytechnic University, Doctor of physical and mathematical sciences _f1963- _gSergey Victorovich _2stltpush _3(RuTPU)RU\TPU\pers\32279 |
|
712 | 0 | 2 | _aD-Wave Systems Inc. |
801 | 2 |
_aRU _b63413507 _c20170306 _gRCR |
|
856 | 4 | _uhttps://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=0&ND=3&adjacent=true&locale=ru_ru&FT=D&date=20090813&CC=WO&NR=2009099972A2&KC=A2# | |
942 | _cCF |