SUMMARY OF PROPOSAL 71095
KYOTO UNIVERSIT
KITASHIRAKAWA OIWAKE-CHO SAKYO-KU
KYOTO
KYOTO JAPAN 606-8502
Tel: (81)-75-753-3867 Fax: (81)-75-753-3799
Medium: 2.5GB8MM
Subject: NORMAL GALAXIES
THE SYSTEMATIC STUDY OF THE POPULATION OF X-RAY SOURCES IN THE MAGELLANIC CLOUDS
ABSTRACT
Large and Small Magelanic Clouds have extremely ideal characters for the systematic study from the X-ray scope. The aims and expected fruit of this survey are 1: Derive the survey of the SNRs which are not observed deeply yet with ASCA, get the more completely sample for the study of SNR evolution. 2: Find the non-thermal X-ray emission SNRs, which will be the proof that these SNRs deals with the cosmic ray accerelation. 3: Find out the new X-ray pulsar, to know the reason for the difference of the population of X-ray sources among SMC, LMC and our galaxy. 4: Study the X-ray spectrum and the spatial structure of the star forming region in both galaxies. 5: Get the complete X-ray images(2-10keV band), which greately help us for the comparison with other wavelength.
CO-INVESTIGATORS
CO-I NAME | INSTITUTE | COUNTRY |
---|
MAMIKO NISHIUCHI | KYOTO UNIVERSITY | JAPAN |
FUMIAKI NAGASE | ISAS | JAPAN |
MASAYUKI ITOH | KOBE UNIVERSITY | JAPAN |
SHUNJI KITAMOTO | OSAKA UNIVERSITY | JAPAN |
SHIGEO YAMAUCHI | IWATE UNIVSESITY | JAPAN |
HIROSHI TSUNEMI | OSAKA UNIVERSITY | JAPAN |
TADAYASU DOTANI | ISAS | JAPAN |
KENZO KINUGASA | GUNMA ASTRO.OBS. | JAPAN |
KUMI YOSHITA | OSAKA UNIVERSITY | JAPAN |
JUN YOKOGAWA | KYOTO UNIVERSITY | JAPAN |
TARGETS
TARGET NAME | PRI | RA | DEC | TIME | TC | OFF | GIS | SIS CNT | OBS |
---|
1)LMC1 | A | 86.8750 | -69.7000 | 40 ks | N | N | P | 0.10000 | 15 |
2)LMC2 | A | 85.5000 | -70.1000 | 40 ks | N | N | P | 1.00000 | 15 |
3)LMC3 | A | 83.1250 | -69.7500 | 40 ks | N | N | P | 0.10000 | 15 |
4)LMC4 | A | 82.2500 | -69.1000 | 40 ks | N | N | P | 0.10000 | 15 |
5)LMC5 | A | 79.2500 | -69.5000 | 40 ks | N | N | P | 0.10000 | 15 |
6)LMC6 | A | 78.5000 | -68.9000 | 40 ks | N | N | P | 0.10000 | 15 |
7)LMC7 | A | 81.0000 | -68.6000 | 40 ks | N | N | P | 0.01000 | 15 |
8)LMC8 | A | 79.5000 | -68.4000 | 40 ks | N | N | P | 0.01000 | 15 |
9)LMC9 | A | 78.2500 | -68.2000 | 40 ks | N | N | P | 0.01000 | 15 |
10)LMC10 | A | 83.2500 | -65.7500 | 40 ks | N | N | P | 0.01000 | 15 |
11)SMC1 | A | 14.5000 | -71.6667 | 40 ks | N | N | P | 1.00000 | 15 |
12)SMC2 | A | 14.6250 | -72.6667 | 40 ks | N | N | P | 1.00000 | 15 |
13)SMC3 | A | 11.8750 | -72.8000 | 40 ks | N | N | P | 1.00000 | 15 |
14)SMC4 | A | 13.6250 | -73.1000 | 40 ks | N | N | P | 0.10000 | 15 |
15)SMC5 | A | 12.7500 | -73.5500 | 40 ks | N | N | P | 0.10000 | 15 |
TARGET 1
COMPLEMENTARY 2CCD MODE
TARGET 2
COMPLEMENTARY 2CCD MODE
TARGET 3
COMPLEMENTARY 2CCD MODE
TARGET 4
COMPLEMENTARY 2CCD MODE
TARGET 5
COMPLEMENTARY 2CCD MODE
TARGET 6
COMPLEMENTARY 2CCD MODE
TARGET 7
COMPLEMENTARY 2CCD MODE
TARGET 8
COMPLEMENTARY 2CCD MODE
TARGET 9
COMPLEMENTARY 2CCD MODE
TARGET 10
COMPLEMENTARY 2CCD MODE
TARGET 11
COMPLEMENTARY 2CCD MODE
TARGET 12
COMPLEMENTARY 2CCD MODE
TARGET 13
COMPLEMENTARY 2CCD MODE
TARGET 14
COMPLEMENTARY 2CCD MODE
TARGET 15
COMPLEMENTARY 2CCD MODE