Class information for: |
Basic class information |
ID | Publications | Average number of references |
Avg. shr. active ref. in WoS |
---|---|---|---|
565 | 15045 | 17.5 | 37% |
Classes in level above (level 4) |
ID, lev. above |
Publications | Label for level above |
---|---|---|
18 | 835618 | OPTICS//PHYSICAL REVIEW A//PHYSICS, APPLIED |
Classes in level below (level 2) |
ID, lev. below |
Publications | Label for level below |
---|---|---|
1474 | 7153 | COPPER VAPOR LASER//MET V OUR LASERS//FAK PHYS E12 |
2367 | 3861 | WARM CARRIER DEVICE//INFRARED ANTENNA//ANTENNA COUPLED DETECTORS |
3132 | 1741 | VORTEX TUBE//RANQUE HILSCH VORTEX TUBE//ENERGY SEPARATION |
3295 | 1373 | SAMARA BRANCH//CHEMICAL OXYGEN IODINE LASER COIL//OXYGEN IODINE LASER |
3594 | 917 | UNSATURATED NUMERICAL METHOD//MOSCOW RADIOTECH//QUASINORMAL FORM |
Terms with highest relevance score |
Rank | Term | Type of term | Relevance score (tfidf) |
Class's shr. of term's tot. occurrences |
Shr. of publ. in class containing term |
Num. of publ. in class |
---|---|---|---|---|---|---|
1 | KVANTOVAYA ELEKTRONIKA | Journal | 218 | 17% | 8% | 1144 |
2 | VORTEX TUBE | Author keyword | 63 | 59% | 0% | 70 |
3 | QUANTUM ELECTRONICS | Journal | 52 | 11% | 3% | 438 |
4 | RANQUE HILSCH VORTEX TUBE | Author keyword | 46 | 78% | 0% | 31 |
5 | ENERGY SEPARATION | Author keyword | 37 | 64% | 0% | 36 |
6 | BALL LIGHTNING | Author keyword | 37 | 67% | 0% | 33 |
7 | APPLIED PHYSICS B-PHOTOPHYSICS AND LASER CHEMISTRY | Journal | 28 | 13% | 1% | 204 |
8 | COPPER VAPOR LASER | Author keyword | 27 | 44% | 0% | 46 |
9 | MET V OUR LASERS | Address | 26 | 100% | 0% | 11 |
10 | FAK PHYS E12 | Address | 23 | 86% | 0% | 12 |
Web of Science journal categories |
Author Key Words |
Rank | Web of Science journal category | Relevance score (tfidf) |
Class's shr. of term's tot. occurrences |
Shr. of publ. in class containing term |
Num. of publ. in class |
LCSH search | Wikipedia search |
---|---|---|---|---|---|---|---|
1 | VORTEX TUBE | 63 | 59% | 0% | 70 | Search VORTEX+TUBE | Search VORTEX+TUBE |
2 | RANQUE HILSCH VORTEX TUBE | 46 | 78% | 0% | 31 | Search RANQUE+HILSCH+VORTEX+TUBE | Search RANQUE+HILSCH+VORTEX+TUBE |
3 | ENERGY SEPARATION | 37 | 64% | 0% | 36 | Search ENERGY+SEPARATION | Search ENERGY+SEPARATION |
4 | BALL LIGHTNING | 37 | 67% | 0% | 33 | Search BALL+LIGHTNING | Search BALL+LIGHTNING |
5 | COPPER VAPOR LASER | 27 | 44% | 0% | 46 | Search COPPER+VAPOR+LASER | Search COPPER+VAPOR+LASER |
6 | RANQUE HILSCH | 23 | 86% | 0% | 12 | Search RANQUE+HILSCH | Search RANQUE+HILSCH |
7 | GAS LASERS | 20 | 38% | 0% | 43 | Search GAS+LASERS | Search GAS+LASERS |
8 | TEMPERATURE SEPARATION | 19 | 71% | 0% | 15 | Search TEMPERATURE+SEPARATION | Search TEMPERATURE+SEPARATION |
9 | EXCILAMP | 18 | 53% | 0% | 24 | Search EXCILAMP | Search EXCILAMP |
10 | WARM CARRIER DEVICE | 17 | 100% | 0% | 8 | Search WARM+CARRIER+DEVICE | Search WARM+CARRIER+DEVICE |
Key Words Plus |
Rank | Web of Science journal category | Relevance score (tfidf) |
Class's shr. of term's tot. occurrences |
Shr. of publ. in class containing term |
Num. of publ. in class |
---|---|---|---|---|---|
1 | EXCILAMPS | 110 | 93% | 0% | 41 |
2 | ATOMIC XENON LASER | 65 | 95% | 0% | 21 |
3 | HGBR | 57 | 95% | 0% | 19 |
4 | XECL LASER | 49 | 44% | 1% | 84 |
5 | NITROGEN LASER | 42 | 70% | 0% | 35 |
6 | QUASI CONTINUOUS OPERATION | 40 | 82% | 0% | 23 |
7 | ENERGY SEPARATION | 36 | 50% | 0% | 52 |
8 | PREIONIZATION | 35 | 49% | 0% | 52 |
9 | ELECTROIONIZATION LASER | 33 | 100% | 0% | 13 |
10 | PREIONIZED XECL LASER | 33 | 100% | 0% | 13 |
Journals |
Rank | Web of Science journal category | Relevance score (tfidf) |
Class's shr. of term's tot. occurrences |
Shr. of publ. in class containing term |
Num. of publ. in class |
---|---|---|---|---|---|
1 | KVANTOVAYA ELEKTRONIKA | 218 | 17% | 8% | 1144 |
2 | QUANTUM ELECTRONICS | 52 | 11% | 3% | 438 |
3 | APPLIED PHYSICS B-PHOTOPHYSICS AND LASER CHEMISTRY | 28 | 13% | 1% | 204 |
Reviews |
Title | Publ. year | Cit. | Active references |
% act. ref. to same field |
---|---|---|---|---|
A review of IR transmitting, hollow waveguides | 2000 | 174 | 26 | 100% |
Physics and engineering of singlet delta oxygen production in low-temperature plasma | 2007 | 129 | 79 | 56% |
Review of Ranque-Hilsch effects in vortex tubes | 2008 | 48 | 21 | 90% |
Excilamps: efficient sources of spontaneous UV and VUV radiation | 2003 | 89 | 39 | 77% |
Vacuum-UV radiation at 185 nm in water treatment - A review | 2014 | 10 | 62 | 34% |
Applications of capacitive and barrier discharge excilamps in photoscience | 2006 | 78 | 93 | 54% |
Nanometer thin-film Ni-NiO-Ni diodes for detection and mixing of 30 THz radiation | 1998 | 76 | 45 | 56% |
A review on design criteria for vortex tubes | 2009 | 20 | 20 | 90% |
Recent progress on application of UV excilamps for degradation of organic pollutants and microbial inactivation | 2012 | 16 | 62 | 53% |
Recent advances in the development of discharge-pumped oxygen-iodine lasers | 2010 | 11 | 30 | 100% |
Address terms |
Rank | Address term | Relevance score (tfidf) |
Class's shr. of term's tot. occurrences |
Shr. of publ. in class containing term |
Num. of publ. in class |
---|---|---|---|---|---|
1 | MET V OUR LASERS | 26 | 100% | 0.1% | 11 |
2 | FAK PHYS E12 | 23 | 86% | 0.1% | 12 |
3 | HIGH CURRENT ELECT | 23 | 15% | 1.0% | 148 |
4 | MET V OR LASERS | 21 | 85% | 0.1% | 11 |
5 | SAMARA BRANCH | 20 | 30% | 0.4% | 55 |
6 | PHOTOCHEM PROC | 12 | 75% | 0.1% | 9 |
7 | PL MATH MODELLING | 12 | 86% | 0.0% | 6 |
8 | LASER SYST ENGN | 11 | 38% | 0.2% | 23 |
9 | MOSCOW RADIOTECH | 7 | 35% | 0.1% | 16 |
10 | ELE ON PROC | 6 | 80% | 0.0% | 4 |
Related classes at same level (level 3) |